WO2023051269A1 - Electric surgical instrument - Google Patents

Electric surgical instrument Download PDF

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Publication number
WO2023051269A1
WO2023051269A1 PCT/CN2022/119096 CN2022119096W WO2023051269A1 WO 2023051269 A1 WO2023051269 A1 WO 2023051269A1 CN 2022119096 W CN2022119096 W CN 2022119096W WO 2023051269 A1 WO2023051269 A1 WO 2023051269A1
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WO
WIPO (PCT)
Prior art keywords
jaw
assembly
cutting
driving
state
Prior art date
Application number
PCT/CN2022/119096
Other languages
French (fr)
Chinese (zh)
Inventor
李正治
孙宝峰
胡杰
Original Assignee
江苏风和医疗器材股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202122395094.5U external-priority patent/CN216060620U/en
Priority claimed from CN202111162105.3A external-priority patent/CN115886911A/en
Application filed by 江苏风和医疗器材股份有限公司 filed Critical 江苏风和医疗器材股份有限公司
Publication of WO2023051269A1 publication Critical patent/WO2023051269A1/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/068Surgical staplers, e.g. containing multiple staples or clamps
    • A61B17/072Surgical staplers, e.g. containing multiple staples or clamps for applying a row of staples in a single action, e.g. the staples being applied simultaneously

Definitions

  • the present application belongs to the field of surgical instruments, in particular to an electric surgical instrument.
  • Existing endoluminal cutting staplers generally include a housing, a shaft assembly extending longitudinally (also referred to as the longitudinal direction) from the housing, and an end effector disposed at the distal end of the shaft assembly.
  • the end effector includes The jaw assembly and the staple cartridge assembly.
  • the jaw assembly includes a staple cartridge seat and an abutment seat pivotally connected to the staple cartridge seat.
  • the staple cartridge seat is used to operably support the nail cartridge assembly located therein. Selectively movable between an open position and a closed position.
  • the housing accommodates a motor and at least part of the cutting drive mechanism and the jaw drive mechanism driven by the motor.
  • the cutting drive mechanism drives the cutting knife assembly to feed or withdraw the knife, and can cut and anastomose tissues when feeding;
  • the jaw drive mechanism drives the jaws The assembly is closed or opened, the jaw assembly can clamp tissue when the jaw assembly is closed, and the tissue can be loosened or aligned to the tissue to be clamped when the jaw assembly is opened.
  • this application aims to propose an electric surgical instrument, which can keep the jaw assembly closed without additional or complicated locking mechanism, so as to ensure that the jaw assembly does not move when the cutting knife assembly advances and withdraws. will open, simplifying the installation and increasing reliability and safety.
  • An electric surgical instrument which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism;
  • the transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving part and a motion conversion part rotatably connected to the jaw driving part; the jaw driving part and the sleeve are connected through the motion conversion part, and the motion conversion part drives the sleeve
  • the tube moves, thereby driving the jaw assembly to open or close; the jaw driving part, the motion conversion part and the sleeve constitute a crank slider mechanism;
  • the transmission mechanism has a first state and a second state. In the first state, the jaw driving part is engaged with the power module; in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part It is at the dead center position of the slider crank mechanism or the jaw driving member and the motion conversion member cross the dead center position.
  • the electric surgical instrument further includes a blocking portion, which is used to limit the motion converting member to a dead center position.
  • An electric surgical instrument which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism;
  • the transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving part and a motion conversion part rotatably connected to the jaw driving part; the jaw driving part and the sleeve are connected through the motion conversion part, and the motion conversion part drives the sleeve
  • the tube moves, thereby driving the jaw assembly to open or close; the jaw driving part, the motion conversion part and the sleeve constitute a crank slider mechanism;
  • the transmission mechanism has a first state and a second state. In the first state, the jaw driving part is engaged with the power module; in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part The dead point position of the slider crank mechanism is crossed; the electric surgical instrument further includes a blocking part, and the blocking part is used for blocking the motion conversion part after the motion conversion part crosses the dead point position.
  • the jaw driving member includes a first jaw driving gear, and in the circumferential direction of the first jaw driving gear, the first jaw driving gear includes an engaging portion and a smooth portion, and in the first state, the engaging portion and the power module engaged; in the second state, the smooth part is coupled with the power module.
  • the jaw driving member further includes a second jaw driving gear, and the second jaw driving gear overlaps with the first jaw driving gear; when in the first state and the second state, the second jaw driving gear is in contact with the first jaw driving gear.
  • the second jaw driving gear can drive the first jaw driving gear to move from the coupling state between the smooth part and the power module to the engagement state between the meshing part and the power module.
  • the first jaw driving gear is provided with a first matching part
  • the second jaw driving gear is provided with a second matching part, and when the smooth part is in a coupled state with the power module, the first matching part and the second matching part are mutually Cooperate to drive the first jaw drive gear to move.
  • the first fitting part is the end part of the groove arranged on the driving gear of the first jaw
  • the second fitting part is a bump
  • the first fitting part is a bump
  • the second fitting part is arranged on the second jaw drive gear.
  • the power module includes a motor and a motor gear connected to the output shaft of the motor.
  • the motor gear meshes with the first jaw drive gear and the second jaw drive gear simultaneously;
  • the gear is coupled to the first jaw drive gear and meshes with the second jaw drive gear.
  • the axis of the motor extends in a forward-backward direction of the powered surgical instrument.
  • the motion converting member includes a connecting rod, one end of the connecting rod is rotatably connected to the jaw driving member, and the other end of the connecting rod is rotatably connected to the bushing.
  • the motion converting member includes a connecting rod and a slider, one end of the connecting rod is rotatably connected to the jaw driving member, the other end of the connecting rod is rotatably connected to the slider, and the slider is fixedly connected to the sleeve.
  • the blocking portion is located on one side of the axis of the sleeve; the blocking portion is fixedly installed on the housing of the electric surgical instrument, or integrally formed on the shell of the electric surgical instrument.
  • the jaw assembly is in a closed state when the jaw driving element and the motion conversion element are at the dead point of the slider crank mechanism.
  • the electric surgical instrument also includes a cutting knife assembly and a mandrel assembly connected to the cutting knife assembly; the transmission mechanism also includes a cutting drive mechanism, which drives the mandrel assembly to move, thereby driving the cutting knife assembly to advance or retreat; the cutting drive The mechanism includes a cutting drive member, in a first state, the cutting drive member is separated from the spindle assembly; in a second state, the cutting drive member is engaged with the spindle assembly to drive the spindle assembly to move, thereby driving the cutter assembly to advance or retreat .
  • the distal end of the cutting drive is spaced apart from the proximal end of the mandrel assembly; in the second state, the distal end of the cutting drive is engaged with the proximal end of the mandrel assembly to drive the mandrel The assembly moves in a first direction, thereby driving the cutter assembly forward.
  • the cutting drive mechanism further includes a conversion assembly.
  • the conversion assembly drives the mandrel assembly to move in a second direction to drive the cutting knife assembly back.
  • the second direction is opposite to the first direction.
  • the conversion assembly includes a moving part and a moving guide, and the moving part is connected to the mandrel assembly; under the action of the cutting driving part, the moving part is guided by the moving guide to move to engage with the cutting driving part, thereby driving the mandrel assembly Move in the second direction.
  • the moving member includes a pivot end pivotally connected to the mandrel assembly, and a first end and a second end extending outward from the pivot end; when the cutting drive member drives the mandrel assembly to move in the first direction, The first end is moved to engage with the cutting drive by the action of the movement guide; when the cutting drive drives the moving part and then drives the mandrel assembly to move in the second direction, the second end is moved by the action of the movement guide to make the first The end is separated from the cutting drive.
  • the mandrel assembly includes a mandrel and a connecting piece connected to the proximal end of the mandrel, the pivot end is pivotally connected to the connecting piece; the first end is provided with an embedded portion, and the distal end of the cutting drive is provided with an engagement groove , the embedding part is embedded in the engaging groove to engage the moving part and the cutting driving part.
  • the movement guide includes a recess and guide surfaces located on both sides of the recess, the guide surface includes a first guide surface and a second guide surface; the first end moves around the pivot end by slidingly contacting the first guide surface To engage the cutting drive, the second end moves about the pivot end to disengage the first end from the cutting drive by slidingly contacting the second guide surface.
  • the conversion assembly includes a moving part and a moving guide, and the moving part is connected to the cutting driving part; under the action of the cutting driving part, the moving part is guided by the moving guide to move to engage with the mandrel assembly, thereby driving the mandrel assembly Move in the second direction.
  • the moving part includes a pivot end pivotally connected with the cutting drive part, and a first end and a second end extending outward from the pivot end; when the cutting drive part moves along the first direction, the first end is The action of the motion guide moves to engage with the mandrel assembly; when the cutting drive drives the moving part and then drives the mandrel assembly to move in the second direction, the second end is moved by the action of the motion guide to make the first end and the mandrel Component separation.
  • the beneficial effect of the present application is that the slider crank mechanism of the jaw drive mechanism can realize self-locking after the jaws are closed, so as to ensure that the jaw assembly does not Open.
  • the technical solution adopted in this application does not require additional or complicated locking mechanisms, has a simple structure, and reduces the weight of the product, which is convenient for doctors to operate; in addition, the reliability is improved to ensure the safety of the operation.
  • Fig. 1 shows a schematic structural view of an electric stapler according to a first embodiment of the present application
  • Fig. 2 shows a schematic view of the internal structure of an electric stapler according to the first embodiment of the present application
  • Figure 3 shows an enlarged view of part A in Figure 2;
  • Fig. 4 shows a schematic view of the internal structure of the electric stapler according to the first embodiment of the present application from another angle;
  • Figure 5 shows an enlarged view of part B in Figure 4.
  • Fig. 6 shows a schematic structural view of the motor gear, the first jaw driving gear and the second jaw driving gear of the electric stapler according to the first embodiment of the present application;
  • Fig. 7 shows a schematic structural view of the first jaw driving gear of the electric stapler according to the first embodiment of the present application
  • Fig. 8 shows a top view of the jaw driving mechanism of the electric stapler in the jaw open state according to the first embodiment of the present application
  • Fig. 9 shows a top view of the jaw driving mechanism of the electric stapler in the jaw closed state according to the first embodiment of the present application.
  • Fig. 10a to Fig. 10f are schematic diagrams showing the state changes of the jaw driving part of the electric stapler according to the first embodiment of the present application;
  • Fig. 11 shows an exploded view of the cutting drive mechanism of the electric stapler according to the first embodiment of the present application
  • Fig. 12 shows a schematic structural view of the motion guide of the electric stapler according to the first embodiment of the present application
  • Fig. 13 shows a schematic structural view of the moving parts of the electric stapler according to the first embodiment of the present application
  • Fig. 14 shows a schematic structural view of the cutting drive of the electric stapler according to the first embodiment of the present application
  • 15a to 15e are schematic diagrams showing the structure and state changes of the cutting drive mechanism of the electric stapler according to the first embodiment of the present application;
  • Fig. 16 shows an exploded view of a part of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application
  • Fig. 17 shows a schematic structural view of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application.
  • Fig. 18 shows a schematic structural view of the connecting parts of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application
  • Fig. 19 shows a schematic structural view of the cutting drive member of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application
  • Fig. 20 shows a schematic structural view of the movement guide of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application
  • Fig. 21a to Fig. 21e show the structure and state change diagrams of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application.
  • the terms “near”, “rear” and “distal”, “anterior” used herein are relative to the clinician manipulating the stapler.
  • the terms “near” and “rear” refer to the part relatively close to the clinician (or in other words, relatively close to the operating assembly 10 of the stapler, see Fig. 1)
  • the terms “far” and “front” refer to the part relatively far away from the clinician ( In other words, the operating assembly 10 that is relatively far away from the stapler, or the end effector 30 that is relatively close to the stapler, see the part in FIG. 1 ).
  • upper and lower refer to the relative positions of the nail anvil 32 and the staple cartridge seat 31 of the jaw assembly, specifically, the nail anvil 32 is “upper” and the staple cartridge seat 31 is “lower”.
  • staplers can be used in many orientations and positions, so these terms expressing relative positional relationships are not limiting and absolute.
  • the electric stapler includes an operating assembly 10, a shaft assembly 20 extending forward from the operating assembly 10, an end effector 30 disposed at the far end (front end) of the shaft assembly 20, and an end effector 30 for Cleaver assembly 40 (see FIG. 11 ) that performs a tissue cut.
  • the operation assembly 10 includes a housing, a power module disposed in the housing, and a power module disposed in the housing.
  • the power supply module is used to provide the required electric energy for the motor 50 .
  • the power module may include a motor 50 and a motor gear 11 connected to an output shaft of the motor 50 .
  • the axis of the motor 50 may extend in the front-back direction of the electric stapler.
  • the shaft assembly 20 includes a core shaft 201 and a sleeve 202 sleeved on the core shaft 201 .
  • the electric stapler also includes a transmission mechanism connected to the output shaft of the motor 50 , and the transmission mechanism includes a jaw driving mechanism 1 and a cutting driving mechanism 2 .
  • the casing 202 can be driven by the jaw drive mechanism 1 to move axially, that is, move forward or backward, the mandrel 201 can be driven by the cutting drive mechanism 2 to move axially, and both the sleeve 202 and the mandrel 201 can move along the axial direction. Move forward (first direction) or backward (second direction).
  • End effector 30 includes a jaw assembly and a cartridge assembly.
  • the jaw assembly includes a staple cartridge base 31 and an abutment base 32 pivotally connected to the staple cartridge base 31 , and the staple cartridge base 31 is used to operably support the staple cartridge assembly located therein.
  • the nail anvil 32 can selectively move between the open position and the closed position, so as to switch between the open state and the closed state, so that the nail anvil 32 cooperates with the nail cartridge seat 31 and the nail cartridge assembly to clamp or loosen open organization.
  • One end (front end) of the sleeve 202 is connected to the nail anvil 32, and the other end (rear end) is connected to the jaw driving mechanism 1, and the jaw driving mechanism 1 can drive the sleeve 202 to move backward or forward. Rearward movement of the sleeve 202 may cause the anvil 32 to pivot upward to open the jaw assembly, and forward movement of the sleeve 202 may cause the anvil 32 to pivot downward to close the jaw assembly.
  • the cutting knife assembly 40 is connected to the mandrel assembly to be driven by the mandrel assembly to perform a firing action or a knife retracting action.
  • the cutting knife assembly 40 includes a knife bar 401 and a knife head 402 connected to the knife bar 401 .
  • the mandrel assembly includes a mandrel 201 and a connector 23 connected to the proximal end of the mandrel 201 .
  • the distal end of the mandrel 201 is connected with the proximal end of the knife rod 401 .
  • the proximal end (rear end) of the mandrel 201 is connected to the cutting drive mechanism 2 , and the distal end (front end) is located in the casing 202 .
  • the cutter head 402 is located in the space formed between the staple cartridge seat 31 and the staple abutment seat 32 of the jaw assembly.
  • the cutting drive mechanism 2 can drive the forward and backward movement of the mandrel 201 .
  • the forward movement of the mandrel 201 can cause the cutter assembly 40 to move forward, cut the tissue and push the staples of the staple cartridge assembly out to staple the tissue.
  • the mandrel 201 moves backward, it drives the cutter assembly 40 to move backward, so as to return to the original position.
  • the housing of the operating assembly 10 includes a connected handle housing and a head housing according to the positional relationship.
  • the head housing accommodates the transmission mechanism, and the handle housing can be held by the user.
  • the handle housing can also house part of the transmission mechanism at the same time.
  • the process of electric stapler cutting and suturing tissue includes:
  • the motor 50 first drives the jaw assembly to close through the jaw driving mechanism 1 to clamp the tissue.
  • the motor 50 drives the cutting knife assembly 40 forward through the cutting drive mechanism 2 to cut and suture the tissue.
  • the motor 50 drives the cutter assembly 40 to retreat through the cutting drive mechanism 2 .
  • the motor 50 drives the jaw assembly to open through the jaw drive mechanism 1 to loosen the tissue, thereby realizing the functions of cutting and suturing of the stapler.
  • the jaw driving mechanism 1 includes a jaw driving member and a motion converting member rotatably connected to the jaw driving member.
  • the jaw driver is connected to the bushing 202 through the motion converting part, and the motion converting part drives the bushing 202 to move, thereby driving the jaw assembly to open or close.
  • the jaw driving part, the motion conversion part and the sleeve 202 constitute a slider crank mechanism.
  • the transmission mechanism has a first state and a second state.
  • the jaw driver When the transmission mechanism is in the first state, the jaw driver is engaged with the power module; when the transmission mechanism is in the second state, the jaw driver is engaged with the power module.
  • the modules are coupled, and the jaw drive and motion transition pass over the dead center position of the slider crank mechanism. Engagement and coupling together achieve selective engagement. Coupling refers to the termination of the joint due to the lack of the structure for cooperation between the parts that cooperate with each other due to the change of relative position or state. Relative position changes include, but are not limited to, the following situations: relative rotation between components.
  • the electric stapler also includes a blocking portion 17, which is located on one side of the axis of the cannula 202; the blocking portion 17 is used to block the motion of the motion converting member after the motion converting member passes the dead center position.
  • the blocking part 17 makes it unable to move further.
  • the blocking portion 17 makes the crank and the connecting rod of the slider-crank mechanism form an included angle, for example, 5° to 20°, with respect to the dead center position of the slider-crank mechanism.
  • the included angle can be greater than 0 degrees and less than 5 degrees.
  • the slider crank mechanism of the jaw drive mechanism can realize self-locking after the jaws are closed, so as to ensure that the jaw assembly will not be opened during the feeding, cutting and retracting processes.
  • the technical solution adopted in this application does not require a complicated locking mechanism, and only needs a simple blocking member to realize locking.
  • the overall structure is simple, and the product weight is reduced, which is convenient for doctors to operate; in addition, the reliability is improved to ensure the safety of the operation.
  • the motor gear 11 is rotatably mounted on the housing.
  • the motor gear 11 can be driven by the motor 50 , for example, the motor gear 11 can be driven by a bevel gear set so that the rotation axis of the motor gear 11 is perpendicular to the rotation axis of the motor 50 .
  • the motor gear 11 can be a spur gear, and the motor gear 11 drives the jaw driver of the jaw drive mechanism 1 as a driving gear.
  • the jaw driving member includes a first jaw driving gear 12.
  • the first jaw driving gear 12 On the circumferential direction of the first jaw driving gear 12, the first jaw driving gear 12 includes an engaging portion 121 and a smooth portion 122.
  • the engaging portion 121 Engaged with the power module; in the second state, the smooth part 122 is coupled with the power module.
  • the gear shaft 16 can be mounted on the housing of the operation assembly 10 , and the first jaw driving gear 12 is rotatably mounted on the gear shaft 16 .
  • the diameter of the smooth portion 122 is smaller than that of the meshing portion 121 so that the smooth portion 122 will not interfere with the motor gear 11 , for example, the diameter of the smooth portion 122 is equal to the diameter of the tooth root of the meshing portion 121 .
  • the motor gear 11 is located in the space area where the smooth part 122 is located and has no contact with the smooth part 122 . Since the smooth part 122 has no teeth, the smooth part 122 is not driven during the coupling process with the motor gear 11 .
  • the arc length corresponding to the engaging portion 121 may be smaller than the arc length corresponding to the smooth portion 122 .
  • the meshing portion 121 of the first jaw driving gear 12 meshes with the motor gear 11, so that the motor gear 11 can drive the first jaw driving gear 12 to rotate at a certain angle.
  • the angle through which the first jaw driving gear 12 is driven by the motor gear 11 is the same as the central angle corresponding to the meshing portion 121 .
  • the first jaw driving gear 12 is provided with a boss 124 protruding from the outer surface of the first jaw driving gear 12 , and the boss 124 may be cylindrical.
  • the connecting rod 14 is connected to the protruding post 124 , so that the connecting rod 14 is connected to the first jaw driving gear 12 so that it can rotate around the protruding post 124 .
  • the jaw driving part further includes a second jaw driving gear 13 , the second jaw driving gear 13 is rotatably mounted on the gear shaft 16 , and the second jaw driving gear 13 and the first jaw driving gear 12 are arranged coaxially.
  • the second jaw driving gear 13 is overlapped with the first jaw driving gear 12 , and the diameters of the second jaw driving gear 13 and the first jaw driving gear 12 (more precisely, the engaging portion 121 ) are the same.
  • the second jaw driving gear 13 In the first state and the second state, the second jaw driving gear 13 is engaged with the power module; in the first state, the motor gear 11 meshes with the first jaw driving gear 12 and the second jaw driving gear 13 at the same time ; In the second state, the motor gear 11 is coupled with the first jaw drive gear 12 and meshed with the second jaw drive gear 13 .
  • the second jaw driving gear 13 can drive the first jaw driving gear 12 to move from the coupling state of the smooth part 122 and the power module to the engagement state of the meshing part 121 and the power module.
  • the second jaw driving gear 13 may be disposed on the lower side of the first jaw driving gear 12 .
  • the first jaw driving gear 12 is provided with a first matching portion 123
  • the second jaw driving gear 13 is provided with a second matching portion 131.
  • the matching parts 131 cooperate with each other to drive the first jaw driving gear 12 to move.
  • the first fitting part 123 and the second fitting part 131 can be separably fitted.
  • the first matching portion 123 is disposed on a surface of the first jaw driving gear 12 facing the second jaw driving gear 13 .
  • the first matching portion 123 may be an end surface of a groove, the groove may be arc-shaped, and the axis of the groove may coincide with the axis of the first jaw driving gear 12 .
  • the second matching portion 131 may be a protrusion (for example, a protruding cylinder). It can be understood that the first fitting portion 123 may be a protrusion, and the second fitting portion 131 is an end portion of a groove.
  • the first matching portion 123 and the second matching portion 131 can be separated or engaged (here, abutting).
  • the first fitting part 123 and the second fitting part 131 are mated, that is, when the bump is against the end face of the groove
  • the second jaw driving gear 13 can drive the first jaw to drive through the bump against the end face of the groove.
  • the gear 12 rotates together, and can be switched from a coupled state with the power module to an engaged state with the power module.
  • the first matching portion 123 and the second matching portion 131 are separated, that is, when the protrusion leaves the end surface of the groove, the first jaw driving gear 12 and the second jaw driving gear 13 can rotate independently.
  • the motion conversion member includes a connecting rod 14 , one end of the connecting rod 14 is rotatably connected to the jaw driving member, and the other end of the connecting rod 14 is rotatably connected to the sleeve 202 .
  • the first jaw drives the gear 12 to rotate to drive the connecting rod 14 to move to drive the casing 202 to close or open the jaw assembly.
  • the motion conversion member includes a connecting rod 14 and a slider 15, one end of the connecting rod 14 is rotatably connected to the jaw driver, and the other end of the connecting rod 14 is rotatably connected to the slider 15 , the slider 15 is fixedly connected to the bushing 202 .
  • the slider 15 is mounted so as to be slidable in the front-rear direction with respect to the operation unit 10 .
  • the first jaw drive gear 12, the connecting rod 14 and the slider 15 constitute a slider crank mechanism. When the first jaw driving gear 12 rotates, the slider 15 can drive the casing 202 to move in the forward and backward direction.
  • the housing of the operating assembly 10 is also provided with a blocking portion 17.
  • the blocking portion 17 can be fixedly installed on the housing of the operating assembly 10 (the housing of the electric stapler), or integrally formed on the operating assembly. 10 housing (the housing of the electric stapler).
  • the blocking portion 17 is located on one side of the axis of the bushing 202 , and the blocking portion 17 can block the movement of the connecting rod 14 .
  • the first jaw driving gear 12 rotates counterclockwise from the initial state shown in FIG. 8 , and the connecting rod 14 can drive the slider 15 to move distally.
  • the extension direction of the connecting rod 14 is parallel to the front-rear direction (this position is called the dead point position)
  • the slider 15 reaches the farthest limit position, and the connecting rod is close to the blocking portion 17 at this moment.
  • the first jaw driving gear 12 continues to rotate an angle in the counterclockwise direction, for example, 5 degrees.
  • the meshing portion 121 of the first jaw driving gear 12 is disengaged from the motor gear 11 . That is to say, when the connecting rod 14 contacts the blocking portion 17, the meshing portion 121 of the motor gear 11 and the first jaw driving gear 12 is just disengaged.
  • the tissue also exerts force on the jaw assembly, so that the jaw assembly has a tendency to open. This force is transmitted to the bushing 202 and slider 15, which are forced backwards.
  • the connecting rod 14 has passed the dead center position.
  • slide block 15 is subject to the backward force and will cause the first jaw drive gear 12 to have a tendency to rotate in the original direction, but the blocking portion 17 can block the connecting rod 14, thereby preventing the first jaw drive gear 12 from continuing to rotate, preventing the first jaw drive gear 12 from continuing to rotate.
  • Slide block 15 moves backward, prevents jaw assembly from opening.
  • the motor gear 11 can drive the cutting drive mechanism 2 to control the cutting knife assembly 40 to perform the firing action or the knife retracting action, and the motor gear 11 drives the second jaw driving gear 13 to rotate, and does not drive the first jaw driving gear 12, passing through the blocking part 17 Blocking the movement of the connecting rod 14 at a suitable position does not require a complicated locking mechanism, and only a simple blocking member is needed to realize the locking.
  • the overall structure is simple, and the jaw assembly can be kept closed during the movement of the cutting knife assembly 40 .
  • the cutter assembly 40 can move. During the movement of the cutter assembly 40, the jaw assembly is closed to clamp the tissue, and the cutter assembly 40 After the knife is withdrawn, the jaw assembly can be opened.
  • the jaw assembly is opened in the initial state, and the motor gear 11 meshes with the first jaw driving gear 12 and the second jaw driving gear 13 at the same time.
  • the motor gear 11 rotates clockwise, driving the first jaw driving gear 12 and the second jaw driving gear 13 to rotate counterclockwise.
  • the first jaw driving gear 12 drives the slider 15 to move forward through the connecting rod 14, and the slider 15 drives the sleeve 202 to move forward, so that the jaw assembly is gradually closed.
  • the first jaw driving gear 12 and the second jaw driving gear 13 rotate through a certain angle together, and when the extending direction of the connecting rod 14 is parallel to the front and rear directions, the slider crank mechanism reaches the dead point position. At the dead point, the first jaw drive gear 12 is about to disengage from the motor gear 11, the connecting rod 14 is about to touch the blocking portion 17, the slider 15 reaches the extreme position of the front end, and the jaw assembly is completely closed.
  • the motor gear 11 continues to rotate a small angle in the clockwise direction, so that the crank-slider mechanism crosses the dead center position.
  • the elastic deformation of the slider 15 and the connecting rod 14 is released to a certain extent, and the slider 15 will not move backward, so the clamping structure of the jaw assembly will not be affected.
  • the connecting rod 14 contacts the blocking portion 17, and the meshing portion 121 of the first jaw driving gear 12 disengages from the motor gear 11.
  • the motor gear 11 cannot drive the first jaw driving gear 12 to rotate, but only drives the second jaw driving gear 13 to rotate.
  • the blocking portion 17 blocks the connecting rod 14 to prevent the first jaw driving gear 12 from continuing to rotate under the force exerted by the tissue on the jaw assembly, thereby keeping the jaw assembly in a closed state all the time.
  • the first jaw drive gear 12 is coupled with the motor gear 11, and when the motor gear 11 continues to rotate clockwise, the first jaw drive gear 12 remains stationary, while the motor gear 11 drives the second jaw
  • the driving gear 13 rotates counterclockwise, so that the first matching portion 123 and the second matching portion 131 are separated.
  • the motor gear 11 drives the cutting knife assembly 40 through the cutting drive mechanism 2 to perform firing.
  • the motor gear 11 rotates counterclockwise, and the motor gear 11 drives the cutting knife assembly 40 through the cutting drive mechanism 2 to perform the knife return action.
  • the motor gear 11 drives the second jaw driving gear 13 to rotate clockwise, and the first matching portion 123 and the second matching portion 131 are gradually approached.
  • Fig. 10e when the knife return is finished, the first matching portion 123 and the second matching portion 131 are engaged again, and the jaw assembly is still closed at this time.
  • the motor gear 11 continues to rotate counterclockwise, the motor gear 11 drives the second jaw driving gear 13 to rotate clockwise, and the second matching part 131 pushes the first matching part 123 to make the first jaw
  • the driving gear 12 also rotates clockwise with the second jaw driving gear 13 .
  • the meshing portion 121 of the first jaw driving gear 12 meshes with the motor gear 11 again, and then the motor gear 11 can drive the first jaw driving gear 12 to rotate clockwise, so that The jaw assembly of the electric stapler is opened back to the initial state.
  • the difference between this embodiment and the previous embodiment is that when the transmission mechanism is in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part are in the crank The dead center position of the slider mechanism. That is, when the transmission mechanism is in the second state, the jaw driving member and the motion conversion member are at the dead point of the slider crank mechanism. At the dead point, the crank (jaw driver) and connecting rod (motion converter) of the crank-slider mechanism are at the same straight line, that is, the connection line and motion between the axis of the jaw driver and the connection position of the motion converter Transitions are collinear.
  • the meshing portion 121 of the first jaw drive gear 12 is disengaged from the motor gear 11, and the jaw assembly is closed at this time, because the first jaw drive gear
  • the meshing part 121 of 12 is disengaged from the motor gear 11, and the motor gear 11 cannot drive the first jaw driving gear 12 to continue to rotate.
  • the motion converting part cannot drive the jaw driving part to move, and the crank slider mechanism realizes self-locking so that the jaw assembly can maintain a closed state.
  • the blocking portion 17 is not necessary, in order to further increase the stability, optionally, the electric stapler also includes a blocking portion 17, and the blocking portion 17 is located on one side of the axis of the sleeve 202; During the process of driving the sleeve 202 to move forward, the blocking part 17 can contact the motion conversion part and block the motion conversion part, so that the motion conversion part is limited to the dead point position. The blocking portion 17 can keep the motion conversion member stably at the dead point, so that the closed state of the jaw assembly can be kept stable.
  • the connecting rod 14 when the connecting rod 14 is at the dead point position, self-locking can be realized, even if the sleeve 202 or the slider 15 connected with the sleeve 202 is under the force of the jaw assembly , the sleeve 202 or the slider 15 connected with the sleeve 202 cannot drive the connecting rod 14 to rotate. Therefore, the jaw driving mechanism or the jaw closing and maintaining structure is simplified, and a separate locking mechanism may not be provided, which reduces the user's labor cost. The operation is difficult, the number of parts is reduced, and the structure of the device is simplified.
  • the electric stapler also includes a cutting knife assembly 40 and a mandrel assembly connected to the cutting knife assembly 40; the transmission mechanism also includes a cutting drive mechanism 2, which drives the mandrel assembly to move, thereby driving the cutting knife assembly 40 forward or backward; the cutting drive mechanism 2 includes a cutting drive member 21, and in the first state, the cutting drive member 21 is separated from the mandrel assembly; in the second state, the cutting drive member 21 is engaged with the mandrel assembly to drive the mandrel The assembly moves to drive the cutter assembly 40 forward or backward.
  • the cutting driving mechanism has a simple and reliable structure, reasonable arrangement and compact structure, so that the size and weight of the electric stapler are small and suitable for use by doctors.
  • the jaw driving mechanism 1 and the cutting driving mechanism 2 of the transmission mechanism are interrelated, so that the opening and closing of the jaws and the forward and backward movement of the cutting knife can be carried out according to the process of cutting and suturing tissue by an electric stapler.
  • the distal end of the cutting driver 21 is spaced apart from the proximal end of the mandrel assembly; Then drive the mandrel assembly to move along the first direction, thereby driving the cutting knife assembly 40 to move forward.
  • the coupling between component A and component B means that component A and component B are in at least partial contact, and component A can drive component B to move under the action of external force.
  • the cutting drive member 21 in the first state, there is an "idle stroke" between the distal end of the cutting drive member 21 and the proximal end of the mandrel assembly, and in the second state, the cutting drive member 21 has moved the "idle stroke” and Matched with the mandrel assembly, so as to drive the mandrel assembly to move along the first direction.
  • the technical scheme has a simple and reliable structure, and the overall arrangement is reasonable, so that the structure is compact, the product size is small, the overall weight can be reduced, and it is suitable for doctors to use.
  • the cutting drive mechanism 2 further includes a conversion assembly.
  • the conversion assembly drives the mandrel assembly to move in a second direction to drive the cutting knife assembly 40 backward, and the second direction is opposite to the first direction.
  • the presence of the conversion assembly enables the mandrel assembly to be driven to move in the second direction. Since the mandrel assembly is connected to the cutting knife assembly 40, the cutting knife assembly 40 can retreat, thereby facilitating the opening of the jaw assembly to meet the requirements of the operation. .
  • the conversion assembly includes a moving part 24 and a moving guide part 22, and the moving part 24 is connected with the mandrel assembly; under the action of the cutting drive part 21, the moving part 24 is guided by the moving guide part 22 to move to engage with the cutting drive part 21, thereby
  • the drive spindle assembly moves in a second direction.
  • the moving member 24 includes a pivot end pivotally connected with the spindle assembly, and a first end and a second end extending outward from the pivot end.
  • the cutting driving member 21 drives the moving member 24 to drive the mandrel assembly to move in the second direction
  • the second end is moved by the moving guide 22 so that the first end is separated from the cutting driving member 21 .
  • the mutual cooperation between the moving part 24 of the conversion assembly and the moving guide part 22 enables the mandrel assembly to return to the initial position.
  • the overall structure of the conversion assembly is simple and compact, and has high reliability.
  • the mandrel assembly includes a mandrel 201 and a connecting member 23 connecting the proximal end of the mandrel 201 , and the pivoting end of the moving member 24 can be pivotally connected to the connecting member 23 through a pin 25 .
  • the distal end of the mandrel 201 is connected to the cutting knife assembly 40, and the mandrel 201 drives the cutting knife assembly 40 to move forward to perform a firing action or to move backward to perform a knife retracting action.
  • the first end of the moving part 24 is provided with an embedding part 241, and the distal end of the cutting driving part 21 is provided with an engagement groove 211, and the embedding part 241 is inserted into the engaging groove 211 so that the moving part 24 is engaged with the cutting driving part 21, or is disengaged from the engaging groove 211 In order to separate the moving part 24 from the cutting driving part 21 .
  • the embedded part 241 is inserted into the engaging groove 211, the side wall of the engaging groove 211 can abut against the front end surface 242 of the embedded part 241, so that the cutting driving part 21 and the connecting part 23 are engaged, thereby driving the moving part 24 and the connecting part 23 to move backward together .
  • the front end surface 242 of the embedded part 241 can be an arc surface or an inclined surface, and the radius of gyration of the part of the front end surface 242 entering the engaging groove 211 first is smaller than or equal to the turning radius of the part entering the engaging groove 211 later.
  • the embedded part 241 is easily withdrawn from the engagement groove 211 to prevent the moving part 24 from being blocked.
  • the connecting part 23 is provided with a contact surface 231 facing the cutting drive part 21.
  • the contact surface 231 may be the most proximal end face of the connecting part 23.
  • the connecting part 23 can be pushed to move forward.
  • the cutting drive part 21 extends along the front and rear direction of the electric stapler, and the cutting drive part 21 and the connecting part 23 can be relatively slidably connected along the front and rear direction, for example, the cutting driving part 21 can be provided with a chute, and the connecting part 23 can be provided with a sliding fitting part , the sliding fit part is embedded in the chute. This results in smoother and more stable movement of the cutting drive.
  • the cutting driving member 21 meshes with the motor gear 11, and the motor gear 11 can drive the cutting driving member 21 to move in the forward and backward direction.
  • the cutting driving part 21 is provided with an engaging groove 211 , and the moving part 24 can be partially embedded in the engaging groove 211 , so that the moving part 24 can move along with the cutting driving part 21 in the forward and backward direction.
  • the moving part 24 can engage the cutting drive part 21 and the connecting part 23 so that the cutting driving part 21 and the mandrel 201 move together in the forward and backward direction, and the moving part 24 can separate the cutting driving part 21 and the connecting part 23 to allow the cutting drive
  • the member 21 moves in the forward and backward direction relative to the mandrel 201 .
  • the cutting driving member 21 is a rack.
  • the cutting driving member 21 may also be a screw nut or other mechanism capable of linear motion.
  • the motion guide 22 can be fixedly connected to the housing of the operating assembly 10 (ie, the housing of the electric stapler), or integrally formed with the housing of the operating assembly 10 (ie, the housing of the electric stapler).
  • the motion guide 22 includes a concave portion and guiding surfaces positioned on both sides of the concave portion, the guiding surface includes a first guiding surface and a second guiding surface; the first end of the moving member 24 pivots around it by slidingly contacting the first guiding surface. The swivel end is moved into engagement with the cutting drive 21 and the second end of the moving member 24 is moved about its pivoted end to disengage the first end from the cutting drive 21 by slidingly contacting the second guide surface.
  • the first guiding surface includes a first inclined surface 221 and a flat surface 223
  • the second guiding surface includes a second inclined surface 222
  • the first inclined surface 221 , the second inclined surface 222 and the flat surface 223 all face the moving member 24 .
  • the first guiding surface and the second guiding surface may also be in other forms such as arc surfaces.
  • the first inclined surface 221 can be located on the front side of the second inclined surface 222, the first inclined surface 221 extends forward and gets closer to the side (such as the upper side) where the moving part 24 is located, and the second inclined surface 222 extends backward and gets closer to the moving part 24 side of where.
  • the plane 223 may be located at the front side of the first slope 221, and the plane 223 is parallel to the front-rear direction.
  • the moving part 24 engages the cutting driving part 21 and the connecting part 23, but the connecting part 23 is not due to the cutting driving part 21 and the connecting part 23.
  • the cutting driving part 21 and the connecting part 23 are connected so that the connecting part 23 can move backward with the cutting driving part 21 .
  • the moving part 24 separates the cutting driving part 21 from the connecting part 23, thereby allowing the cutting driving part 21 to move forward and backward relative to the connecting part 23. sports.
  • 1 to 5 and 15a to 15e illustrate the working state of the cutting drive mechanism 2 during the process of cutting and suturing tissue by the electric stapler.
  • the jaw assembly is opened in the initial state, the cutting knife assembly is at the proximal end, and the contact surface 231 of the cutting driving member 21 and the connecting member 23 has a gap.
  • the motor gear 11 rotates, and the jaw assembly is closed by the jaw drive mechanism 1, and at the same time, the motor gear 11 drives the cutting drive member 21 to move forward for a certain distance.
  • Figures 9 and 15b when the jaw assembly is fully closed, that is, when the connecting rod 14 touches the blocking portion 17, the cutting driver 21 just abuts against the contact surface 231, and the cutting driver 21 can continue to move forward.
  • Make the connecting member 23 push the cutter assembly 40 forward to execute the firing action.
  • the connecting member 23 moves forward, the first end of the moving member 24 contacts the first inclined surface 221 .
  • the cutting driving part 21 pushes the connecting part 23 and moves forward together.
  • the moving part 24 moves along the direction shown in FIG. 15c under the action of the first inclined surface 221. Rotate clockwise, so that the embedded portion 241 is inserted into the engagement groove 211 .
  • the connecting piece 23 continues to move forward, the bottom surface of the moving piece 24 keeps in contact with the plane 223 .
  • the knife retraction action is started, the motor gear 11 rotates in reverse, and the cutting driver 21 is driven to move backward, the side wall of the engagement groove 211 abuts against the embedded part 241, and the moving part 24 and the connecting part 23 can follow the cutting process.
  • the driving member 21 moves backward.
  • the electric stapler of the second embodiment is generally similar to the electric stapler of the first embodiment, and the specific structure of the cutting drive mechanism is different.
  • the cutting drive mechanism of the second embodiment is the same as that of the first embodiment or Similar components are denoted by the same reference numerals, and detailed descriptions of these same or similar components are omitted.
  • the cutting driving mechanism 2 includes a cutting driving member 21 and a conversion assembly.
  • the conversion assembly includes a moving part 24 and a moving guide part 22, and the moving part 24 is connected with the cutting drive part 21; under the action of the cutting driving part 21, the moving part 24 is guided by the moving guide part 22 to move to engage with the mandrel assembly, thereby The drive spindle assembly moves in a second direction.
  • the moving member 24 includes a pivot end pivotally connected with the cutting drive member 21 , and a first end and a second end extending outward from the pivot end.
  • the cutting driver 21 moves along the first direction
  • the first end moves to engage with the mandrel assembly under the action of the motion guide 22;
  • the cutting driver 21 drives the moving part 24 and then drives the mandrel assembly to move along the second direction
  • the second end is moved by the motion guide 22 so that the first end is separated from the mandrel assembly.
  • the mutual cooperation between the moving part 24 of the conversion assembly and the moving guide part 22 enables the mandrel assembly to return to the initial position.
  • the overall structure of the conversion assembly is simple and compact, and has high reliability.
  • the motion guide 22 includes a concave portion and guiding surfaces on both sides of the concave portion, the guiding surface includes a first guiding surface and a second guiding surface; the first end moves around the pivoting end to be in contact with the first guiding surface by slidingly contacting the first guiding surface.
  • the spindle assembly is engaged and the second end is moved about the pivot end to disengage the first end from the spindle assembly by slidingly contacting the second guide surface.
  • the first guiding surface includes a first inclined surface 221 and a flat surface 223
  • the second guiding surface includes a second inclined surface 222
  • the first inclined surface 221 , the second inclined surface 222 and the flat surface 223 all face the moving member 24 .
  • the mandrel assembly includes a mandrel 201 and a connector 23 connected to the proximal end of the mandrel 201; the first end is provided with an inlay 241, the connector 23 is provided with an engaging groove 211, and the inlay 241 is embedded in the engaging groove 211 so that the moving part 24 engages with the mandrel assembly, or disengages from the engaging groove 211 to separate the moving part from the mandrel assembly.
  • the motion guide 22 also includes a hollowed-out part, which is located below the recessed part and/or the guide surface.
  • the hollowed-out part is a slot arranged under the recessed part and the guide surface.
  • the opening faces the proximal surface of the motion guide 22 , and the motion guide 22 is elastic by providing a slot.
  • the slot can be only provided under the guide surface, and the hollowed out part can also be a groove located under the recessed part and/or the guide surface, which also makes the movement guide 22 elastic.
  • the second slope 222 of the movement guide 22 itself has elasticity or includes an elastic part such as a spring.
  • the movement guide 22 has elasticity so that when the movement member 24 moves backward with the cutting drive member 21, the movement guide 22 can be compressed to prevent the movement member 24 from being stuck.
  • the pivoting end of the moving member 24 is pivotably connected to the front end of the cutting driving member 21 through a pin shaft 25 .
  • the moving part 24 is provided with an embedded part 241 , and when the cutting driving part 21 retreats backward, the front end surface 242 of the embedded part 241 can abut against the sidewall of the engagement groove 211 , thereby driving the connecting part 23 to move backward together.
  • the connecting part 23 is provided with an engaging groove 211 , and the moving part 24 can be partially embedded in the engaging groove 211 , so that the connecting part 23 can move along the front and rear directions together with the moving part 24 and the cutting driving part 21 .
  • the connecting piece 23 is provided with a contact surface 231 and a third inclined surface 232 , and in the left-right direction of the electric stapler, a third inclined surface 232 can be sandwiched between the two contact surfaces 231 .
  • the third slope 232 extends to the opening of the engaging groove 211 .
  • the third slope 232 can guide the embedding part 241 to move to the opening position of the engaging groove 211 .
  • 1 to 5 and 21a to 21e illustrate the working state of the cutting drive mechanism 2 during the process of the electric stapler cutting and suturing tissue.
  • the jaw assembly is opened in the initial state, the cutting knife assembly is at the proximal end, and there is a gap between the front end of the cutting driving element 21 and the contact surface 231 of the connecting element 23.
  • the cutting driving part 21 does not push the connecting part 23, and the connecting part 23 remains still.
  • the moving part 24 slides along the third slope 232 , so that the moving part 24 rotates around the pin 25 in the counterclockwise direction of FIG.
  • the cutting drive member 21 continues to move forward, and the first end of the moving member 24 touches the first inclined surface 221, so that the moving member 24 rotates clockwise in FIG. , and the front end of the cutting drive part contacts the contact surface 231, the cutting drive part 21 can push the connecting part 23 to move forward together, and push the cutting knife assembly to execute the firing action.
  • the connecting piece 23 continues to move forward, the bottom surface of the moving piece 24 keeps in contact with the plane 223 .
  • the motor gear 11 drives the cutting drive part 21 to continue to move backward, and the moving part 24 rotates clockwise in the clockwise direction of Fig. 21e under the elastic action of the moving guide part 22 and the action of the third inclined surface 232, and returns to the initial position as shown in Fig. 21a. state.
  • the electric surgical instrument in this application can complete anastomosis and cutting at the same time, and the electric surgical instrument includes an end effector, a jaw driving mechanism, a cutting driving mechanism, a power module, and the like.
  • Electric surgical instruments include, but are not limited to, electric staplers, suturing equipment, and surgical robots. Although the present application uses an electric stapler as an example to describe the electric surgical instrument, the electric surgical instrument in the present application is not limited to the electric stapler.
  • jaw drive mechanism and the cutting drive mechanism have been described above.
  • the jaw drive mechanism and cutting drive mechanism of the present application do not have to be present at the same time.
  • the jaw driving mechanism can be used in combination with any suitable existing cutting driving mechanism to realize various functions of the stapler, and similarly, the cutting driving mechanism can also be used in combination with any suitable existing jaw driving mechanism to realize Various functions of the stapler.

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Abstract

An electric surgical instrument, comprising a jaw assembly, a sleeve (202), a transmission mechanism, and a power module. The transmission mechanism comprises a jaw driving mechanism (1), which comprises a jaw driving piece and a motion conversion piece rotatably connected to the jaw driving piece; the jaw driving piece is connected to the sleeve (202) by means of the motion conversion piece, and the motion conversion piece drives the sleeve (202) to move, such that the jaw assembly is driven to be opened or closed; the jaw driving piece, the motion conversion piece, and the sleeve (202) form a slider-crank mechanism; the transmission mechanism has a first state and a second state; in the first state, the jaw driving piece is connected to the power module; in the second state, the jaw driving piece is coupled with the power module, and the jaw driving piece and the motion conversion piece are located at the dead point position of the slider-crank mechanism. According to the surgical instrument, the jaw assembly can be kept closed without an additional or complex locking mechanism, such that it is guaranteed that the jaw assembly cannot be opened when a cutting knife assembly feeds and retracts.

Description

电动外科器械Electric Surgical Instruments
相关申请related application
本申请要求于2021年9月30日提交至中国专利局、申请号为202111162105.3,申请名称为“电动外科器械”,以及于2021年9月30日提交至中国专利局、申请号为202122395094.5,申请名称为“电动外科器械”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。This application is required to be submitted to the China Patent Office on September 30, 2021, with the application number 202111162105.3, and the application name is "Electric Surgical Instruments", and submitted to the China Patent Office on September 30, 2021, with the application number 202122395094.5, and the application The priority of the Chinese patent application entitled "Electric Surgical Instrument", the entire content of which is incorporated in this application by reference.
技术领域technical field
本申请属于外科器械领域,特别涉及一种电动外科器械。The present application belongs to the field of surgical instruments, in particular to an electric surgical instrument.
背景技术Background technique
众所周知,外科器械已经普遍应用于腹腔等腔内手术中。As everyone knows, surgical instruments have been widely used in intracavitary operations such as the abdominal cavity.
现有的腔内切割吻合器一般包括壳体、从壳体沿纵向(也称为纵长方向)延伸的杆身组件及设置于杆身组件远侧端的端部执行器,端部执行器包括钳口组件和钉仓组件,钳口组件包括钉仓座和可枢转地连接于钉仓座的抵钉座,钉仓座用于可操作地支撑位于其中的钉仓组件,抵钉座可在打开位置和闭合位置之间选择性地运动。Existing endoluminal cutting staplers generally include a housing, a shaft assembly extending longitudinally (also referred to as the longitudinal direction) from the housing, and an end effector disposed at the distal end of the shaft assembly. The end effector includes The jaw assembly and the staple cartridge assembly. The jaw assembly includes a staple cartridge seat and an abutment seat pivotally connected to the staple cartridge seat. The staple cartridge seat is used to operably support the nail cartridge assembly located therein. Selectively movable between an open position and a closed position.
壳体内收容有电机及由电机驱动的至少部分切割驱动机构和钳口驱动机构,切割驱动机构驱动切割刀组件进刀或退刀,进刀时可切割和吻合组织;钳口驱动机构驱动钳口组件闭合或打开,钳口组件闭合时可夹持组织,钳口组件打开时可松开组织或对准待夹持组织。The housing accommodates a motor and at least part of the cutting drive mechanism and the jaw drive mechanism driven by the motor. The cutting drive mechanism drives the cutting knife assembly to feed or withdraw the knife, and can cut and anastomose tissues when feeding; the jaw drive mechanism drives the jaws The assembly is closed or opened, the jaw assembly can clamp tissue when the jaw assembly is closed, and the tissue can be loosened or aligned to the tissue to be clamped when the jaw assembly is opened.
现有吻合器的钳口驱动机构,当驱动钳口组件闭合后,需要额外的或者复杂的锁定机构保持钳口组件闭合,以防止钳口组件在切割刀组件进刀、退刀时打开。但是额外的或者复杂的锁定机构导致电动吻合器的机构复杂,可靠性较低,有必要进行改进。In the existing jaw driving mechanism of an anastomat, after the driving jaw assembly is closed, an additional or complex locking mechanism is required to keep the jaw assembly closed, so as to prevent the jaw assembly from opening when the cutting knife assembly advances and withdraws. However, additional or complex locking mechanisms lead to complex mechanisms of electric staplers and low reliability, so it is necessary to improve them.
申请内容application content
针对现有技术的不足,本申请旨在提出一种电动外科器械,无需额外的或者复杂的锁定机构就可以使钳口组件保持闭合,以确保切割刀组件进刀、退刀时钳口组件不会打开,从而简化装置,并提高可靠性和安全性。Aiming at the deficiencies in the prior art, this application aims to propose an electric surgical instrument, which can keep the jaw assembly closed without additional or complicated locking mechanism, so as to ensure that the jaw assembly does not move when the cutting knife assembly advances and withdraws. will open, simplifying the installation and increasing reliability and safety.
本申请通过以下技术方案实现:The application is realized through the following technical solutions:
一种电动外科器械,其包括钳口组件、套管、传动机构以及动力模块;套管连接于钳口组件的近端;动力模块用于为传动机构提供动力;An electric surgical instrument, which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism;
传动机构包括钳口驱动机构,钳口驱动机构包括钳口驱动件和可转动地连接于钳口驱动件的运动转换件;通过运动转换件连接钳口驱动件和套管,运动转换件驱动套管运动,从而驱动钳口组件打开或闭合;钳口驱动件、运动转换件及套管构成曲柄滑块机构;The transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving part and a motion conversion part rotatably connected to the jaw driving part; the jaw driving part and the sleeve are connected through the motion conversion part, and the motion conversion part drives the sleeve The tube moves, thereby driving the jaw assembly to open or close; the jaw driving part, the motion conversion part and the sleeve constitute a crank slider mechanism;
传动机构具有第一状态和第二状态,在第一状态时,钳口驱动件与动力模块接合;在第二状态时,钳口驱动件与动力模块耦合,并且钳口驱动件和运动转换件处于曲柄滑块机构的死点位置或者钳口驱动件和运动转换件越过死点位置。The transmission mechanism has a first state and a second state. In the first state, the jaw driving part is engaged with the power module; in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part It is at the dead center position of the slider crank mechanism or the jaw driving member and the motion conversion member cross the dead center position.
优选地,电动外科器械还包括阻挡部,阻挡部用于将运动转换件限位于死点位置。Preferably, the electric surgical instrument further includes a blocking portion, which is used to limit the motion converting member to a dead center position.
一种电动外科器械,其包括钳口组件、套管、传动机构以及动力模块;套管连接于钳口组件的近端;动力模块用于为传动机构提供动力;An electric surgical instrument, which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism;
传动机构包括钳口驱动机构,钳口驱动机构包括钳口驱动件和可转动地连接于钳口驱动件的运动转换件;通过运动转换件连接钳口驱动件和套管,运动转换件驱动套管运动,从而驱动钳口组件打开或闭合;钳口驱动件、运动转换件及套管构成曲柄滑块机构;The transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving part and a motion conversion part rotatably connected to the jaw driving part; the jaw driving part and the sleeve are connected through the motion conversion part, and the motion conversion part drives the sleeve The tube moves, thereby driving the jaw assembly to open or close; the jaw driving part, the motion conversion part and the sleeve constitute a crank slider mechanism;
传动机构具有第一状态和第二状态,在第一状态时,钳口驱动件与动力模块接合;在第二状态时,钳口驱动件与动力模块耦合,并且钳口驱动件和运动转换件越过曲柄滑块机构的死点位置;电动外科器械还包括阻挡部,阻挡部用于在运动转换件越过死点位置后阻挡运动转换件。The transmission mechanism has a first state and a second state. In the first state, the jaw driving part is engaged with the power module; in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part The dead point position of the slider crank mechanism is crossed; the electric surgical instrument further includes a blocking part, and the blocking part is used for blocking the motion conversion part after the motion conversion part crosses the dead point position.
优选地,钳口驱动件包括第一钳口驱动齿轮,在第一钳口驱动齿轮的周向上,第一钳口驱动齿轮包括啮合部和光滑部,在第一状态时,啮合部与动力模块接合;在第二状态时,光滑部与动力模块耦合。Preferably, the jaw driving member includes a first jaw driving gear, and in the circumferential direction of the first jaw driving gear, the first jaw driving gear includes an engaging portion and a smooth portion, and in the first state, the engaging portion and the power module engaged; in the second state, the smooth part is coupled with the power module.
优选地,钳口驱动件还包括第二钳口驱动齿轮,第二钳口驱动齿轮与第一钳口驱动齿轮叠置;在第一状态及第二状态时,第二钳口驱动齿轮均与动力模块接合;在光滑部处于与动力模块耦合状态时,第二钳口驱动齿轮能驱动第一钳口驱动齿轮由光滑部与动力模块耦合状态运动至啮合部与动力模块接合状态。Preferably, the jaw driving member further includes a second jaw driving gear, and the second jaw driving gear overlaps with the first jaw driving gear; when in the first state and the second state, the second jaw driving gear is in contact with the first jaw driving gear. Engagement of the power module; when the smooth part is in the coupled state with the power module, the second jaw driving gear can drive the first jaw driving gear to move from the coupling state between the smooth part and the power module to the engagement state between the meshing part and the power module.
优选地,第一钳口驱动齿轮设置有第一配合部,第二钳口驱动齿轮设置有第二配合部,在光滑部处于与动力模块耦合状态时,第一配合部与第二配合部相互配合以驱动第一钳口驱动齿轮运动。Preferably, the first jaw driving gear is provided with a first matching part, and the second jaw driving gear is provided with a second matching part, and when the smooth part is in a coupled state with the power module, the first matching part and the second matching part are mutually Cooperate to drive the first jaw drive gear to move.
优选地,第一配合部为设置于第一钳口驱动齿轮的凹槽的端部,第二配合部为凸块,或 者第一配合部为凸块,第二配合部为设置于第二钳口驱动齿轮的凹槽的端部;凸块与端部抵接使得第一钳口驱动齿轮能够从与动力模块耦合状态切换至与动力模块接合状态。Preferably, the first fitting part is the end part of the groove arranged on the driving gear of the first jaw, the second fitting part is a bump, or the first fitting part is a bump, and the second fitting part is arranged on the second jaw drive gear. The end of the groove of the jaw drive gear; the protrusion abuts against the end so that the first jaw drive gear can be switched from the coupled state with the power module to the engaged state with the power module.
优选地,动力模块包括电机和连接于电机的输出轴的电机齿轮,在第一状态时,电机齿轮同时与第一钳口驱动齿轮和第二钳口驱动齿轮啮合;在第二状态时,电机齿轮与第一钳口驱动齿轮耦合,且与第二钳口驱动齿轮啮合。Preferably, the power module includes a motor and a motor gear connected to the output shaft of the motor. In the first state, the motor gear meshes with the first jaw drive gear and the second jaw drive gear simultaneously; The gear is coupled to the first jaw drive gear and meshes with the second jaw drive gear.
优选地,电机的轴线沿电动外科器械的前后方向延伸。Preferably, the axis of the motor extends in a forward-backward direction of the powered surgical instrument.
优选地,运动转换件包括连杆,连杆的一端能够转动地连接于钳口驱动件,连杆的另一端能够转动地连接于套管。Preferably, the motion converting member includes a connecting rod, one end of the connecting rod is rotatably connected to the jaw driving member, and the other end of the connecting rod is rotatably connected to the bushing.
优选地,运动转换件包括连杆和滑块,连杆的一端能够转动地连接于钳口驱动件,连杆的另一端能够转动地连接于滑块,滑块固定连接于套管。Preferably, the motion converting member includes a connecting rod and a slider, one end of the connecting rod is rotatably connected to the jaw driving member, the other end of the connecting rod is rotatably connected to the slider, and the slider is fixedly connected to the sleeve.
优选地,阻挡部位于套管的轴线的一侧;阻挡部固定安装于电动外科器械的壳体,或者一体地形成于电动外科器械的壳体。Preferably, the blocking portion is located on one side of the axis of the sleeve; the blocking portion is fixedly installed on the housing of the electric surgical instrument, or integrally formed on the shell of the electric surgical instrument.
优选地,钳口驱动件和运动转换件处于曲柄滑块机构的死点位置时,钳口组件处于闭合状态。Preferably, the jaw assembly is in a closed state when the jaw driving element and the motion conversion element are at the dead point of the slider crank mechanism.
优选地,电动外科器械还包括切割刀组件和与切割刀组件连接的芯轴组件;传动机构还包括切割驱动机构,切割驱动机构驱动芯轴组件运动,从而驱动切割刀组件前进或后退;切割驱动机构包括切割驱动件,在第一状态时,切割驱动件与芯轴组件分离;在第二状态时,切割驱动件与芯轴组件接合以驱动芯轴组件运动,从而驱动切割刀组件前进或后退。Preferably, the electric surgical instrument also includes a cutting knife assembly and a mandrel assembly connected to the cutting knife assembly; the transmission mechanism also includes a cutting drive mechanism, which drives the mandrel assembly to move, thereby driving the cutting knife assembly to advance or retreat; the cutting drive The mechanism includes a cutting drive member, in a first state, the cutting drive member is separated from the spindle assembly; in a second state, the cutting drive member is engaged with the spindle assembly to drive the spindle assembly to move, thereby driving the cutter assembly to advance or retreat .
优选地,在第一状态时,切割驱动件的远端与芯轴组件的近端间隔设置;在第二状态时,切割驱动件的远端与芯轴组件的近端配接以驱动芯轴组件沿第一方向运动,从而驱动切割刀组件前进。Preferably, in the first state, the distal end of the cutting drive is spaced apart from the proximal end of the mandrel assembly; in the second state, the distal end of the cutting drive is engaged with the proximal end of the mandrel assembly to drive the mandrel The assembly moves in a first direction, thereby driving the cutter assembly forward.
优选地,切割驱动机构还包括转换组件,转换组件在切割驱动件的作用下,驱动芯轴组件沿第二方向运动以驱动切割刀组件后退,第二方向与第一方向相反。Preferably, the cutting drive mechanism further includes a conversion assembly. Under the action of the cutting drive member, the conversion assembly drives the mandrel assembly to move in a second direction to drive the cutting knife assembly back. The second direction is opposite to the first direction.
优选地,转换组件包括运动件和运动引导件,运动件与芯轴组件连接;在切割驱动件的作用下,运动件受运动引导件的引导运动至与切割驱动件接合,从而驱动芯轴组件沿第二方向运动。Preferably, the conversion assembly includes a moving part and a moving guide, and the moving part is connected to the mandrel assembly; under the action of the cutting driving part, the moving part is guided by the moving guide to move to engage with the cutting driving part, thereby driving the mandrel assembly Move in the second direction.
优选地,运动件包括与芯轴组件枢转连接的枢转端,和自枢转端向外延伸的第一端和第二端;在切割驱动件驱动芯轴组件沿第一方向运动时,第一端受运动引导件的作用运动至与切割驱动件接合;在切割驱动件驱动运动件进而驱动芯轴组件沿第二方向运动时,第二端受运动引导件的作用运动以使第一端与切割驱动件分离。Preferably, the moving member includes a pivot end pivotally connected to the mandrel assembly, and a first end and a second end extending outward from the pivot end; when the cutting drive member drives the mandrel assembly to move in the first direction, The first end is moved to engage with the cutting drive by the action of the movement guide; when the cutting drive drives the moving part and then drives the mandrel assembly to move in the second direction, the second end is moved by the action of the movement guide to make the first The end is separated from the cutting drive.
优选地,芯轴组件包括芯轴和与芯轴的近端连接的连接件,枢转端枢转地连接于连接件;第一端设置有嵌入部,切割驱动件的远端设置有接合槽,嵌入部嵌入接合槽以使运动件和切割驱动件接合。Preferably, the mandrel assembly includes a mandrel and a connecting piece connected to the proximal end of the mandrel, the pivot end is pivotally connected to the connecting piece; the first end is provided with an embedded portion, and the distal end of the cutting drive is provided with an engagement groove , the embedding part is embedded in the engaging groove to engage the moving part and the cutting driving part.
优选地,运动引导件包括凹陷部以及位于凹陷部两侧的引导面,引导面包括第一引导面和第二引导面;第一端通过与第一引导面滑动地接触而绕枢转端运动至与切割驱动件接合,第二端通过与第二引导面滑动地接触而绕枢转端运动以使第一端与切割驱动件分离。Preferably, the movement guide includes a recess and guide surfaces located on both sides of the recess, the guide surface includes a first guide surface and a second guide surface; the first end moves around the pivot end by slidingly contacting the first guide surface To engage the cutting drive, the second end moves about the pivot end to disengage the first end from the cutting drive by slidingly contacting the second guide surface.
优选地,转换组件包括运动件和运动引导件,运动件与切割驱动件连接;在切割驱动件的作用下,运动件受运动引导件的引导运动至与芯轴组件接合,从而驱动芯轴组件沿第二方向运动。Preferably, the conversion assembly includes a moving part and a moving guide, and the moving part is connected to the cutting driving part; under the action of the cutting driving part, the moving part is guided by the moving guide to move to engage with the mandrel assembly, thereby driving the mandrel assembly Move in the second direction.
优选地,运动件包括与切割驱动件枢转连接的枢转端,和自枢转端向外延伸的第一端和第二端;在切割驱动件沿第一方向运动时,第一端受运动引导件的作用运动至与芯轴组件接合;在切割驱动件驱动运动件进而驱动芯轴组件沿第二方向运动时,第二端受运动引导件的作用运动以使第一端与芯轴组件分离。Preferably, the moving part includes a pivot end pivotally connected with the cutting drive part, and a first end and a second end extending outward from the pivot end; when the cutting drive part moves along the first direction, the first end is The action of the motion guide moves to engage with the mandrel assembly; when the cutting drive drives the moving part and then drives the mandrel assembly to move in the second direction, the second end is moved by the action of the motion guide to make the first end and the mandrel Component separation.
与现有技术相比,本申请的有益效果在于:钳口驱动机构的曲柄滑块机构在钳口闭合后,可以实现自锁,以确保切割刀组件进刀、退刀时钳口组件不会打开。本申请采用的技术方案,无需额外的或者复杂的锁定机构,结构简单,且产品重量降低有利于医生操作;另外可靠性提高,保证手术的安全性。Compared with the prior art, the beneficial effect of the present application is that the slider crank mechanism of the jaw drive mechanism can realize self-locking after the jaws are closed, so as to ensure that the jaw assembly does not Open. The technical solution adopted in this application does not require additional or complicated locking mechanisms, has a simple structure, and reduces the weight of the product, which is convenient for doctors to operate; in addition, the reliability is improved to ensure the safety of the operation.
附图说明Description of drawings
图1示出了根据本申请的第一实施方式的电动吻合器的结构示意图;Fig. 1 shows a schematic structural view of an electric stapler according to a first embodiment of the present application;
图2示出了根据本申请的第一实施方式的电动吻合器的一角度的内部结构示意图;Fig. 2 shows a schematic view of the internal structure of an electric stapler according to the first embodiment of the present application;
图3示出了图2中A部分的放大图;Figure 3 shows an enlarged view of part A in Figure 2;
图4示出了根据本申请的第一实施方式的电动吻合器的另一角度的内部结构示意图;Fig. 4 shows a schematic view of the internal structure of the electric stapler according to the first embodiment of the present application from another angle;
图5示出了图4中B部分的放大图;Figure 5 shows an enlarged view of part B in Figure 4;
图6示出了根据本申请的第一实施方式的电动吻合器的电机齿轮、第一钳口驱动齿轮和第二钳口驱动齿轮的结构示意图;Fig. 6 shows a schematic structural view of the motor gear, the first jaw driving gear and the second jaw driving gear of the electric stapler according to the first embodiment of the present application;
图7示出了根据本申请的第一实施方式的电动吻合器的第一钳口驱动齿轮的结构示意图;Fig. 7 shows a schematic structural view of the first jaw driving gear of the electric stapler according to the first embodiment of the present application;
图8示出了根据本申请的第一实施方式的电动吻合器在钳口打开状态的钳口驱动机构的俯视图;Fig. 8 shows a top view of the jaw driving mechanism of the electric stapler in the jaw open state according to the first embodiment of the present application;
图9示出了根据本申请的第一实施方式的电动吻合器在钳口闭合状态的钳口驱动机构的俯视图;Fig. 9 shows a top view of the jaw driving mechanism of the electric stapler in the jaw closed state according to the first embodiment of the present application;
图10a至图10f示出了根据本申请的第一实施方式的电动吻合器的钳口驱动件的状态变化示意图;Fig. 10a to Fig. 10f are schematic diagrams showing the state changes of the jaw driving part of the electric stapler according to the first embodiment of the present application;
图11示出了根据本申请的第一实施方式的电动吻合器的切割驱动机构的爆炸图;Fig. 11 shows an exploded view of the cutting drive mechanism of the electric stapler according to the first embodiment of the present application;
图12示出了根据本申请的第一实施方式的电动吻合器的运动引导件的结构示意图;Fig. 12 shows a schematic structural view of the motion guide of the electric stapler according to the first embodiment of the present application;
图13示出了根据本申请的第一实施方式的电动吻合器的运动件的结构示意图;Fig. 13 shows a schematic structural view of the moving parts of the electric stapler according to the first embodiment of the present application;
图14示出了根据本申请的第一实施方式的电动吻合器的切割驱动件的结构示意图;Fig. 14 shows a schematic structural view of the cutting drive of the electric stapler according to the first embodiment of the present application;
图15a至图15e示出了根据本申请的第一实施方式的电动吻合器的切割驱动机构的结构及状态变化示意图;15a to 15e are schematic diagrams showing the structure and state changes of the cutting drive mechanism of the electric stapler according to the first embodiment of the present application;
图16示出了根据本申请的第二实施方式的电动吻合器的部分切割驱动机构的爆炸图;Fig. 16 shows an exploded view of a part of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application;
图17示出了根据本申请的第二实施方式的电动吻合器的切割驱动机构的结构示意图;Fig. 17 shows a schematic structural view of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application;
图18示出了根据本申请的第二实施方式的电动吻合器的切割驱动机构的连接件的结构示意图;Fig. 18 shows a schematic structural view of the connecting parts of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application;
图19示出了根据本申请的第二实施方式的电动吻合器的切割驱动机构的切割驱动件的结构示意图;Fig. 19 shows a schematic structural view of the cutting drive member of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application;
图20示出了根据本申请的第二实施方式的电动吻合器的切割驱动机构的运动引导件的结构示意图;Fig. 20 shows a schematic structural view of the movement guide of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application;
图21a至图21e示出了根据本申请的第二实施方式的电动吻合器的切割驱动机构的结构及状态变化示意图。Fig. 21a to Fig. 21e show the structure and state change diagrams of the cutting drive mechanism of the electric stapler according to the second embodiment of the present application.
附图标记说明Explanation of reference signs
10、操作组件;20、杆身组件;201、芯轴;202、套管;30、端部执行器;31、钉仓座;32、抵钉座;40、切割刀组件;401、刀杆;402、刀头;50、电机;1、钳口驱动机构;11、电机齿轮;12、第一钳口驱动齿轮;121、啮合部;122、光滑部;123、第一配合部;124、凸柱;13、第二钳口驱动齿轮;131、第二配合部;14、连杆;15、滑块;16、齿轮轴;17、阻挡部;2、切割驱动机构;21、切割驱动件;211、接合槽;22、运动引导件;221、第一斜面;222、第二斜面;223、平面;23、连接件;231、接触面;232、第三斜面;24、运动件;241、嵌入部;242、前端面;25、销轴。10. Operation component; 20. Shaft component; 201. Mandrel; 202. Sleeve; 30. End effector; 31. Nail cartridge seat; 32. Nail abutment seat; 40. Cutting knife component; ; 402, cutter head; 50, motor; 1, jaw driving mechanism; 11, motor gear; 12, first jaw driving gear; 121, meshing portion; 122, smooth portion; 123, first matching portion; 124, Protruding column; 13, second jaw driving gear; 131, second matching part; 14, connecting rod; 15, slider; 16, gear shaft; 17, blocking part; 2, cutting driving mechanism; 21, cutting driving part ; , embedded part; 242, front end face; 25, pin shaft.
具体实施方式Detailed ways
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本申请,并不用于限定本申请。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。In order to make the purpose, technical solution and advantages of the present application clearer, the present application will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present application, not to limit the present application. Based on the embodiments in this application, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the scope of protection of this application.
需要理解的是,本文所用术语“近”、“后”和“远”、“前”是相对于操纵吻合器的临床医生而言的。术语“近”、“后”是指相对靠近临床医生(或者说,相对靠近吻合器的操作组件10,参见图1)的部分,术语“远”、“前”则是指相对远离临床医生(或者说,相对远离吻合器的操作组件10,或相对靠近吻合器的端部执行器30,参见图1)的部分。术语“上”“下”以钳口组件的抵钉座32和钉仓座31的相对位置为参考,具体的,抵钉座32在“上”,钉仓座31在“下”。然而,吻合器可以在许多方向和位置使用,因此这些表达相对位置关系的术语并不是受限和绝对的。It should be understood that the terms "near", "rear" and "distal", "anterior" used herein are relative to the clinician manipulating the stapler. The terms "near" and "rear" refer to the part relatively close to the clinician (or in other words, relatively close to the operating assembly 10 of the stapler, see Fig. 1), and the terms "far" and "front" refer to the part relatively far away from the clinician ( In other words, the operating assembly 10 that is relatively far away from the stapler, or the end effector 30 that is relatively close to the stapler, see the part in FIG. 1 ). The terms "upper" and "lower" refer to the relative positions of the nail anvil 32 and the staple cartridge seat 31 of the jaw assembly, specifically, the nail anvil 32 is "upper" and the staple cartridge seat 31 is "lower". However, staplers can be used in many orientations and positions, so these terms expressing relative positional relationships are not limiting and absolute.
在本申请中,除非另有明确的规定和限定,“相连”、“连接”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸地连接,还可以是可运动地连接,或成一体;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系如抵接。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。需要说明的是,在“相连”、“连接”前有限定语时,其具有相应限定语所限定的含义,只排除明显需要排除的情形,不排除其它可能的情形,如“可拆卸地连接”指的是可拆卸式的连接,不包括成一体,但可运动连接等并不排除在外。In this application, unless otherwise specified and limited, terms such as "connected" and "connected" should be interpreted in a broad sense, for example, it can be a fixed connection, a detachable connection, or a movable connection , or integrated; it can be directly connected or indirectly connected through an intermediary, it can be the internal communication of two elements or the interaction relationship between two elements such as butting. Those of ordinary skill in the art can understand the specific meanings of the above terms in this application according to specific situations. It should be noted that when there are qualifiers before "connected" and "connected", it has the meaning defined by the corresponding qualifiers, and only the situations that obviously need to be excluded are excluded, and other possible situations are not excluded, such as "detachably connected" Refers to the detachable connection, does not include integrated, but the movable connection is not excluded.
(第一实施方式)(first embodiment)
如图1至图5所示,电动吻合器包括操作组件10、自操作组件10向前延伸的杆身组件20、设在杆身组件20远端(前端)的端部执行器30以及用于执行组织切割的切割刀组件40(参见图11)。As shown in FIGS. 1 to 5 , the electric stapler includes an operating assembly 10, a shaft assembly 20 extending forward from the operating assembly 10, an end effector 30 disposed at the far end (front end) of the shaft assembly 20, and an end effector 30 for Cleaver assembly 40 (see FIG. 11 ) that performs a tissue cut.
操作组件10包括壳体、设在壳体内的动力模块、设在壳体内的电源模块。电源模块用于为电机50提供所需电能。动力模块可以包括电机50和连接电机50的输出轴的电机齿轮11。电机50的轴线可以沿电动吻合器的前后方向延伸。The operation assembly 10 includes a housing, a power module disposed in the housing, and a power module disposed in the housing. The power supply module is used to provide the required electric energy for the motor 50 . The power module may include a motor 50 and a motor gear 11 connected to an output shaft of the motor 50 . The axis of the motor 50 may extend in the front-back direction of the electric stapler.
杆身组件20包括芯轴201及套设于芯轴201的套管202。电动吻合器还包括与电机50的输出轴连接的传动机构,传动机构包括钳口驱动机构1和切割驱动机构2。套管202可以由钳口驱动机构1驱动沿轴向移动,即向前或向后移动,芯轴201可以由切割驱动 机构2驱动沿轴向移动,套管202和芯轴201均可以沿轴向向前(第一方向)或向后(第二方向)移动。The shaft assembly 20 includes a core shaft 201 and a sleeve 202 sleeved on the core shaft 201 . The electric stapler also includes a transmission mechanism connected to the output shaft of the motor 50 , and the transmission mechanism includes a jaw driving mechanism 1 and a cutting driving mechanism 2 . The casing 202 can be driven by the jaw drive mechanism 1 to move axially, that is, move forward or backward, the mandrel 201 can be driven by the cutting drive mechanism 2 to move axially, and both the sleeve 202 and the mandrel 201 can move along the axial direction. Move forward (first direction) or backward (second direction).
端部执行器30包括钳口组件和钉仓组件。钳口组件包括钉仓座31和可枢转地相连于钉仓座31的抵钉座32,钉仓座31用于可操作地支撑位于其中的钉仓组件。抵钉座32可在打开位置和闭合位置之间选择性地运动,实现在打开状态和闭合状态之间的切换,从而抵钉座32与钉仓座31和钉仓组件配合而夹紧或松开组织。 End effector 30 includes a jaw assembly and a cartridge assembly. The jaw assembly includes a staple cartridge base 31 and an abutment base 32 pivotally connected to the staple cartridge base 31 , and the staple cartridge base 31 is used to operably support the staple cartridge assembly located therein. The nail anvil 32 can selectively move between the open position and the closed position, so as to switch between the open state and the closed state, so that the nail anvil 32 cooperates with the nail cartridge seat 31 and the nail cartridge assembly to clamp or loosen open organization.
套管202的一端(前端)连接于抵钉座32,另一端(后端)连接于钳口驱动机构1,钳口驱动机构1可驱动套管202向后或向前移动。套管202的向后移动可使得抵钉座32向上枢转以打开钳口组件,套管202的向前移动可使得抵钉座32向下枢转以闭合钳口组件。One end (front end) of the sleeve 202 is connected to the nail anvil 32, and the other end (rear end) is connected to the jaw driving mechanism 1, and the jaw driving mechanism 1 can drive the sleeve 202 to move backward or forward. Rearward movement of the sleeve 202 may cause the anvil 32 to pivot upward to open the jaw assembly, and forward movement of the sleeve 202 may cause the anvil 32 to pivot downward to close the jaw assembly.
参见图11,切割刀组件40与芯轴组件连接以被芯轴组件驱动执行击发动作或退刀动作。具体的,切割刀组件40包括刀杆401,连接于刀杆401的刀头402。芯轴组件包括芯轴201和与芯轴201的近端连接的连接件23。芯轴201的远端与刀杆401的近端连接。Referring to FIG. 11 , the cutting knife assembly 40 is connected to the mandrel assembly to be driven by the mandrel assembly to perform a firing action or a knife retracting action. Specifically, the cutting knife assembly 40 includes a knife bar 401 and a knife head 402 connected to the knife bar 401 . The mandrel assembly includes a mandrel 201 and a connector 23 connected to the proximal end of the mandrel 201 . The distal end of the mandrel 201 is connected with the proximal end of the knife rod 401 .
芯轴201的近端(后端)连接于切割驱动机构2,远端(前端)位于套管202内。在切割和缝合的过程中,刀头402位于钳口组件的钉仓座31和抵钉座32之间形成的空间内。切割驱动机构2可驱动芯轴201的向前和向后运动。当安装了钉仓组件时,芯轴201的向前移动可使得切割刀组件40向前移动,切割组织并推动钉仓组件的吻合钉出钉来缝合组织。芯轴201向后移动时带动切割刀组件40向后移动,以恢复至初始位置。The proximal end (rear end) of the mandrel 201 is connected to the cutting drive mechanism 2 , and the distal end (front end) is located in the casing 202 . During the cutting and stapling process, the cutter head 402 is located in the space formed between the staple cartridge seat 31 and the staple abutment seat 32 of the jaw assembly. The cutting drive mechanism 2 can drive the forward and backward movement of the mandrel 201 . When the staple cartridge assembly is installed, the forward movement of the mandrel 201 can cause the cutter assembly 40 to move forward, cut the tissue and push the staples of the staple cartridge assembly out to staple the tissue. When the mandrel 201 moves backward, it drives the cutter assembly 40 to move backward, so as to return to the original position.
操作组件10的壳体按照位置关系包括相连的手柄壳体和头部壳体,头部壳体收容传动机构,手柄壳体可供用户握持。当然,在一些实施例中,手柄壳体亦可同时收容部分传动机构。The housing of the operating assembly 10 includes a connected handle housing and a head housing according to the positional relationship. The head housing accommodates the transmission mechanism, and the handle housing can be held by the user. Of course, in some embodiments, the handle housing can also house part of the transmission mechanism at the same time.
电动吻合器切割缝合组织的过程包括:The process of electric stapler cutting and suturing tissue includes:
钳口组件闭合:电机50通过钳口驱动机构1先驱动钳口组件闭合而夹紧组织。Closing of the jaw assembly: the motor 50 first drives the jaw assembly to close through the jaw driving mechanism 1 to clamp the tissue.
切割刀组件40击发:电机50通过切割驱动机构2驱动切割刀组件40前进而切割和缝合组织。Firing of the cutting knife assembly 40: the motor 50 drives the cutting knife assembly 40 forward through the cutting drive mechanism 2 to cut and suture the tissue.
切割刀组件40退刀:电机50通过切割驱动机构2驱动切割刀组件40后退。Retraction of the cutter assembly 40: the motor 50 drives the cutter assembly 40 to retreat through the cutting drive mechanism 2 .
钳口组件打开:电机50通过钳口驱动机构1驱动钳口组件打开而松开组织,从而实现吻合器切割及缝合的功能。Opening of the jaw assembly: the motor 50 drives the jaw assembly to open through the jaw drive mechanism 1 to loosen the tissue, thereby realizing the functions of cutting and suturing of the stapler.
如图1至图10f所示,钳口驱动机构1包括钳口驱动件和可转动地连接于钳口驱动 件的运动转换件。通过运动转换件连接钳口驱动件和套管202,运动转换件驱动套管202运动,从而驱动钳口组件打开或闭合。钳口驱动件、运动转换件及套管202构成曲柄滑块机构。As shown in Figures 1 to 10f, the jaw driving mechanism 1 includes a jaw driving member and a motion converting member rotatably connected to the jaw driving member. The jaw driver is connected to the bushing 202 through the motion converting part, and the motion converting part drives the bushing 202 to move, thereby driving the jaw assembly to open or close. The jaw driving part, the motion conversion part and the sleeve 202 constitute a slider crank mechanism.
在一实施例中,传动机构具有第一状态和第二状态,在传动机构处于第一状态时,钳口驱动件与动力模块接合;在传动机构处于第二状态时,钳口驱动件与动力模块耦合,并且钳口驱动件和运动转换件越过曲柄滑块机构的死点位置。接合和耦合,共同实现了选择性接合。耦合,是指相互配合的部件之间由于相对位置或状态的变化,用于配合的结构缺失而使得接合终止。相对位置变化包括但不限于以下情形:部件之间相对转动。电动吻合器还包括阻挡部17,该阻挡部17位于套管202的轴线的一侧;阻挡部17用于在运动转换件越过死点位置后阻挡运动转换件的运动。In one embodiment, the transmission mechanism has a first state and a second state. When the transmission mechanism is in the first state, the jaw driver is engaged with the power module; when the transmission mechanism is in the second state, the jaw driver is engaged with the power module. The modules are coupled, and the jaw drive and motion transition pass over the dead center position of the slider crank mechanism. Engagement and coupling together achieve selective engagement. Coupling refers to the termination of the joint due to the lack of the structure for cooperation between the parts that cooperate with each other due to the change of relative position or state. Relative position changes include, but are not limited to, the following situations: relative rotation between components. The electric stapler also includes a blocking portion 17, which is located on one side of the axis of the cannula 202; the blocking portion 17 is used to block the motion of the motion converting member after the motion converting member passes the dead center position.
钳口驱动件和运动转换件越过曲柄滑块机构的死点位置后,阻挡部17使得其无法进一步运动。阻挡部17使曲柄滑块机构的曲柄和连杆与当其处于曲柄滑块机构的死点位置时呈夹角例如5度至20度。当然可以理解地是,只要钳口驱动件和运动转换件越过死点位置即可,因此该夹角可以大于0度小于5度。After the jaw driving part and the motion conversion part crossed the dead center position of the slider crank mechanism, the blocking part 17 makes it unable to move further. The blocking portion 17 makes the crank and the connecting rod of the slider-crank mechanism form an included angle, for example, 5° to 20°, with respect to the dead center position of the slider-crank mechanism. Of course, it can be understood that as long as the jaw driving part and the motion conversion part cross the dead point, the included angle can be greater than 0 degrees and less than 5 degrees.
本实施例中,钳口驱动机构的曲柄滑块机构在钳口闭合后,可以实现自锁,以确保在进刀、切割和退刀的过程中钳口组件不会打开。本申请采用的技术方案,无需复杂的锁定机构,只需要简单的阻挡件即可实现锁定,整体结构简单,且产品重量降低有利于医生操作;另外可靠性提高,保证手术的安全性。In this embodiment, the slider crank mechanism of the jaw drive mechanism can realize self-locking after the jaws are closed, so as to ensure that the jaw assembly will not be opened during the feeding, cutting and retracting processes. The technical solution adopted in this application does not require a complicated locking mechanism, and only needs a simple blocking member to realize locking. The overall structure is simple, and the product weight is reduced, which is convenient for doctors to operate; in addition, the reliability is improved to ensure the safety of the operation.
下面将对该实施例展开详细说明。This embodiment will be described in detail below.
电机齿轮11能够转动地安装于壳体,电机齿轮11可以由电机50驱动,例如可以通过锥齿轮组驱动电机齿轮11,使电机齿轮11的转轴与电机50的转轴垂直。电机齿轮11可以为直齿轮,电机齿轮11作为主动齿轮驱动钳口驱动机构1的钳口驱动件。The motor gear 11 is rotatably mounted on the housing. The motor gear 11 can be driven by the motor 50 , for example, the motor gear 11 can be driven by a bevel gear set so that the rotation axis of the motor gear 11 is perpendicular to the rotation axis of the motor 50 . The motor gear 11 can be a spur gear, and the motor gear 11 drives the jaw driver of the jaw drive mechanism 1 as a driving gear.
钳口驱动件包括第一钳口驱动齿轮12,在第一钳口驱动齿轮12的周向上,第一钳口驱动齿轮12包括啮合部121和光滑部122,在第一状态时,啮合部121与动力模块接合;在第二状态时,光滑部122与动力模块耦合。The jaw driving member includes a first jaw driving gear 12. On the circumferential direction of the first jaw driving gear 12, the first jaw driving gear 12 includes an engaging portion 121 and a smooth portion 122. In the first state, the engaging portion 121 Engaged with the power module; in the second state, the smooth part 122 is coupled with the power module.
齿轮轴16可以安装于操作组件10的壳体,第一钳口驱动齿轮12能够转动地安装于齿轮轴16。光滑部122的直径小于啮合部121的直径,使得光滑部122不会与电机齿轮11产生干涉,例如,光滑部122的直径等于啮合部121的齿根部的直径。电机齿轮11位于光滑部122所在的空间区域而与光滑部122没有接触,由于光滑部122没有齿,因此光滑部122与电机齿轮11耦合的过程中不被驱动。The gear shaft 16 can be mounted on the housing of the operation assembly 10 , and the first jaw driving gear 12 is rotatably mounted on the gear shaft 16 . The diameter of the smooth portion 122 is smaller than that of the meshing portion 121 so that the smooth portion 122 will not interfere with the motor gear 11 , for example, the diameter of the smooth portion 122 is equal to the diameter of the tooth root of the meshing portion 121 . The motor gear 11 is located in the space area where the smooth part 122 is located and has no contact with the smooth part 122 . Since the smooth part 122 has no teeth, the smooth part 122 is not driven during the coupling process with the motor gear 11 .
在该实施方式中,啮合部121对应弧长可以小于光滑部122对应的弧长。第一钳口驱动齿轮12的啮合部121与电机齿轮11啮合,使电机齿轮11可以驱动第一钳口驱动齿轮12转动一定角度。第一钳口驱动齿轮12被电机齿轮11驱动所转过的角度与啮合部121对应的圆心角相同。In this embodiment, the arc length corresponding to the engaging portion 121 may be smaller than the arc length corresponding to the smooth portion 122 . The meshing portion 121 of the first jaw driving gear 12 meshes with the motor gear 11, so that the motor gear 11 can drive the first jaw driving gear 12 to rotate at a certain angle. The angle through which the first jaw driving gear 12 is driven by the motor gear 11 is the same as the central angle corresponding to the meshing portion 121 .
第一钳口驱动齿轮12设置有凸柱124,凸柱124凸出于第一钳口驱动齿轮12的外表面,凸柱124可以为圆柱状。连杆14连接于凸柱124,使连杆14能够绕凸柱124转动地连接于第一钳口驱动齿轮12。The first jaw driving gear 12 is provided with a boss 124 protruding from the outer surface of the first jaw driving gear 12 , and the boss 124 may be cylindrical. The connecting rod 14 is connected to the protruding post 124 , so that the connecting rod 14 is connected to the first jaw driving gear 12 so that it can rotate around the protruding post 124 .
钳口驱动件还包括第二钳口驱动齿轮13,第二钳口驱动齿轮13能够转动地安装于齿轮轴16,第二钳口驱动齿轮13和第一钳口驱动齿轮12同轴设置。第二钳口驱动齿轮13与第一钳口驱动齿轮12叠置,第二钳口驱动齿轮13和第一钳口驱动齿轮12(更准确地,是指啮合部121)的直径相同。在第一状态及第二状态时,第二钳口驱动齿轮13均与动力模块接合;在第一状态时,电机齿轮11同时与第一钳口驱动齿轮12和第二钳口驱动齿轮13啮合;在第二状态时,电机齿轮11与第一钳口驱动齿轮12耦合,且与第二钳口驱动齿轮13啮合。在光滑部122处于与动力模块耦合状态时,第二钳口驱动齿轮13能驱动第一钳口驱动齿轮12由光滑部122与动力模块耦合状态运动至啮合部121与动力模块接合状态。The jaw driving part further includes a second jaw driving gear 13 , the second jaw driving gear 13 is rotatably mounted on the gear shaft 16 , and the second jaw driving gear 13 and the first jaw driving gear 12 are arranged coaxially. The second jaw driving gear 13 is overlapped with the first jaw driving gear 12 , and the diameters of the second jaw driving gear 13 and the first jaw driving gear 12 (more precisely, the engaging portion 121 ) are the same. In the first state and the second state, the second jaw driving gear 13 is engaged with the power module; in the first state, the motor gear 11 meshes with the first jaw driving gear 12 and the second jaw driving gear 13 at the same time ; In the second state, the motor gear 11 is coupled with the first jaw drive gear 12 and meshed with the second jaw drive gear 13 . When the smooth part 122 is in the coupling state with the power module, the second jaw driving gear 13 can drive the first jaw driving gear 12 to move from the coupling state of the smooth part 122 and the power module to the engagement state of the meshing part 121 and the power module.
更为具体地,第二钳口驱动齿轮13可以设置于第一钳口驱动齿轮12的下侧。第一钳口驱动齿轮12设置有第一配合部123,第二钳口驱动齿轮13设置有第二配合部131,在光滑部122处于与动力模块耦合状态时,第一配合部123与第二配合部131相互配合以驱动第一钳口驱动齿轮12运动。第一配合部123和第二配合部131能够分离地配合。第一配合部123设置于第一钳口驱动齿轮12的朝向第二钳口驱动齿轮13的表面。例如第一配合部123可以是凹槽的端面,凹槽可以为圆弧形,凹槽的轴线可以和第一钳口驱动齿轮12的轴线重合。More specifically, the second jaw driving gear 13 may be disposed on the lower side of the first jaw driving gear 12 . The first jaw driving gear 12 is provided with a first matching portion 123, and the second jaw driving gear 13 is provided with a second matching portion 131. When the smooth portion 122 is in a coupled state with the power module, the first matching portion 123 and the second The matching parts 131 cooperate with each other to drive the first jaw driving gear 12 to move. The first fitting part 123 and the second fitting part 131 can be separably fitted. The first matching portion 123 is disposed on a surface of the first jaw driving gear 12 facing the second jaw driving gear 13 . For example, the first matching portion 123 may be an end surface of a groove, the groove may be arc-shaped, and the axis of the groove may coincide with the axis of the first jaw driving gear 12 .
第二配合部131可以为凸块(例如,为凸出的圆柱)。可以理解,第一配合部123可以是凸块,第二配合部131为是凹槽的端部。The second matching portion 131 may be a protrusion (for example, a protruding cylinder). It can be understood that the first fitting portion 123 may be a protrusion, and the second fitting portion 131 is an end portion of a groove.
随着第一钳口驱动齿轮12和第二钳口驱动齿轮13相对转动,第一配合部123和第二配合部131能够分离或接合(这里是抵接)。在第一配合部123和第二配合部131配合时,即凸块抵在凹槽的端面时,通过凸块推着凹槽的端面,第二钳口驱动齿轮13可以带动第一钳口驱动齿轮12一起转动,能够从与动力模块耦合状态切换至与动力模块接合状态。在第一配合部123和第二配合部131分离时,即凸块离开凹槽的端面时,第一钳 口驱动齿轮12和第二钳口驱动齿轮13可以分别独立地转动。As the first jaw driving gear 12 and the second jaw driving gear 13 rotate relative to each other, the first matching portion 123 and the second matching portion 131 can be separated or engaged (here, abutting). When the first fitting part 123 and the second fitting part 131 are mated, that is, when the bump is against the end face of the groove, the second jaw driving gear 13 can drive the first jaw to drive through the bump against the end face of the groove. The gear 12 rotates together, and can be switched from a coupled state with the power module to an engaged state with the power module. When the first matching portion 123 and the second matching portion 131 are separated, that is, when the protrusion leaves the end surface of the groove, the first jaw driving gear 12 and the second jaw driving gear 13 can rotate independently.
在一种可能的实施方式中,运动转换件包括连杆14,连杆14的一端能够转动地连接于钳口驱动件,连杆14的另一端能够转动地连接于套管202。在第一钳口驱动齿轮12转动,带动连杆14运动,以带动套管202运动,实现钳口组件的闭合或打开。In a possible implementation manner, the motion conversion member includes a connecting rod 14 , one end of the connecting rod 14 is rotatably connected to the jaw driving member, and the other end of the connecting rod 14 is rotatably connected to the sleeve 202 . The first jaw drives the gear 12 to rotate to drive the connecting rod 14 to move to drive the casing 202 to close or open the jaw assembly.
在另一种可能的实施方式中,运动转换件包括连杆14和滑块15,连杆14的一端能够转动地连接于钳口驱动件,连杆14的另一端能够转动地连接于滑块15,滑块15固定连接于套管202。滑块15能够相对于操作组件10沿前后方向滑动地安装。第一钳口驱动齿轮12、连杆14和滑块15构成了曲柄滑块机构。在第一钳口驱动齿轮12转动时,滑块15可以带动套管202沿前后方向运动。滑块15带动套管202向前时,钳口组件闭合,滑块15带动套管202向后时,钳口组件打开。如图8所示,操作组件10的壳体还设置有阻挡部17,这里,阻挡部17可以固定安装于操作组件10的壳体(电动吻合器的壳体),或者一体地形成于操作组件10的壳体(电动吻合器的壳体)。阻挡部17位于套管202的轴线的一侧,阻挡部17能够阻挡连杆14运动。第一钳口驱动齿轮12从图8的初始状态沿逆时针方向转动,连杆14可以带动滑块15向远端移动。在连杆14的延伸方向与前后方向平行时(该位置称为死点位置),滑块15达到最远端的极限位置,此时连杆接近阻挡部17。In another possible implementation manner, the motion conversion member includes a connecting rod 14 and a slider 15, one end of the connecting rod 14 is rotatably connected to the jaw driver, and the other end of the connecting rod 14 is rotatably connected to the slider 15 , the slider 15 is fixedly connected to the bushing 202 . The slider 15 is mounted so as to be slidable in the front-rear direction with respect to the operation unit 10 . The first jaw drive gear 12, the connecting rod 14 and the slider 15 constitute a slider crank mechanism. When the first jaw driving gear 12 rotates, the slider 15 can drive the casing 202 to move in the forward and backward direction. When the slider 15 drives the casing 202 forward, the jaw assembly is closed, and when the slider 15 drives the sleeve 202 backward, the jaw assembly is opened. As shown in Figure 8, the housing of the operating assembly 10 is also provided with a blocking portion 17. Here, the blocking portion 17 can be fixedly installed on the housing of the operating assembly 10 (the housing of the electric stapler), or integrally formed on the operating assembly. 10 housing (the housing of the electric stapler). The blocking portion 17 is located on one side of the axis of the bushing 202 , and the blocking portion 17 can block the movement of the connecting rod 14 . The first jaw driving gear 12 rotates counterclockwise from the initial state shown in FIG. 8 , and the connecting rod 14 can drive the slider 15 to move distally. When the extension direction of the connecting rod 14 is parallel to the front-rear direction (this position is called the dead point position), the slider 15 reaches the farthest limit position, and the connecting rod is close to the blocking portion 17 at this moment.
如图9所示,第一钳口驱动齿轮12继续沿逆时针方向转动一个角度,例如转动5度。第一钳口驱动齿轮12的啮合部121与电机齿轮11脱离啮合。也就是说,在连杆14接触阻挡部17时,电机齿轮11和第一钳口驱动齿轮12的啮合部121刚好脱离。可以理解,钳口组件夹住组织时,组织也对钳口组件施力,使钳口组件具有打开的趋势。这个力传递到套管202和滑块15,套管202和滑块15受到向后的力。在电机齿轮11和第一钳口驱动齿轮12的啮合部121脱离的状态下,连杆14已经通过死点位置。此时滑块15受到向后的力将导致第一钳口驱动齿轮12具有沿原方向转动的趋势,但阻挡部17可以挡住连杆14,从而阻止第一钳口驱动齿轮12继续转动,阻止滑块15向后移动,防止钳口组件打开。As shown in FIG. 9 , the first jaw driving gear 12 continues to rotate an angle in the counterclockwise direction, for example, 5 degrees. The meshing portion 121 of the first jaw driving gear 12 is disengaged from the motor gear 11 . That is to say, when the connecting rod 14 contacts the blocking portion 17, the meshing portion 121 of the motor gear 11 and the first jaw driving gear 12 is just disengaged. It can be understood that when the jaw assembly clamps the tissue, the tissue also exerts force on the jaw assembly, so that the jaw assembly has a tendency to open. This force is transmitted to the bushing 202 and slider 15, which are forced backwards. In the state where the motor gear 11 is disengaged from the meshing portion 121 of the first jaw driving gear 12, the connecting rod 14 has passed the dead center position. Now the slide block 15 is subject to the backward force and will cause the first jaw drive gear 12 to have a tendency to rotate in the original direction, but the blocking portion 17 can block the connecting rod 14, thereby preventing the first jaw drive gear 12 from continuing to rotate, preventing the first jaw drive gear 12 from continuing to rotate. Slide block 15 moves backward, prevents jaw assembly from opening.
电机齿轮11可以驱动切割驱动机构2控制切割刀组件40执行击发动作或退刀动作,并且电机齿轮11驱动第二钳口驱动齿轮13转动,不驱动第一钳口驱动齿轮12,通过阻挡部17在合适的位置阻挡连杆14运动,无需复杂的锁定机构,只需要简单的阻挡件即可实现锁定,整体结构简单,就可以在切割刀组件40移动过程中使钳口组件保持闭合的状态。The motor gear 11 can drive the cutting drive mechanism 2 to control the cutting knife assembly 40 to perform the firing action or the knife retracting action, and the motor gear 11 drives the second jaw driving gear 13 to rotate, and does not drive the first jaw driving gear 12, passing through the blocking part 17 Blocking the movement of the connecting rod 14 at a suitable position does not require a complicated locking mechanism, and only a simple blocking member is needed to realize the locking. The overall structure is simple, and the jaw assembly can be kept closed during the movement of the cutting knife assembly 40 .
可以理解,只有在钳口组件闭合而夹紧组织的情况下,切割刀组件40才能够移动,在切割刀组件40移动的过程中,钳口组件闭合而夹紧组织,并且在切割刀组件40退刀后,钳口组件才可以打开。It can be understood that only when the jaw assembly is closed and the tissue is clamped, the cutter assembly 40 can move. During the movement of the cutter assembly 40, the jaw assembly is closed to clamp the tissue, and the cutter assembly 40 After the knife is withdrawn, the jaw assembly can be opened.
通过图8、图9、10a至图10f,说明在电动吻合器切割缝合组织的过程中钳口驱动机构1的工作状态。8, 9, 10a to 10f illustrate the working state of the jaw driving mechanism 1 during the process of cutting and suturing tissue by the electric stapler.
如图8和图10a所示,在初始状态时钳口组件是打开的,电机齿轮11同时与第一钳口驱动齿轮12啮合和第二钳口驱动齿轮13啮合。在钳口组件逐渐闭合过程中,电机齿轮11沿顺时针方向旋转,驱动第一钳口驱动齿轮12和第二钳口驱动齿轮13沿逆时针方向旋转。第一钳口驱动齿轮12通过连杆14带动滑块15向前运动,滑块15带动套管202向前运动,使钳口组件逐渐闭合。As shown in FIG. 8 and FIG. 10 a , the jaw assembly is opened in the initial state, and the motor gear 11 meshes with the first jaw driving gear 12 and the second jaw driving gear 13 at the same time. During the gradual closing process of the jaw assembly, the motor gear 11 rotates clockwise, driving the first jaw driving gear 12 and the second jaw driving gear 13 to rotate counterclockwise. The first jaw driving gear 12 drives the slider 15 to move forward through the connecting rod 14, and the slider 15 drives the sleeve 202 to move forward, so that the jaw assembly is gradually closed.
第一钳口驱动齿轮12和第二钳口驱动齿轮13一起转过一定角度,连杆14的延伸方向和前后方向平行时,曲柄滑块机构达到死点位置。在死点位置,第一钳口驱动齿轮12与电机齿轮11即将脱离啮合,连杆14即将接触到阻挡部17,滑块15达到最前端的极限位置,钳口组件完全闭合。The first jaw driving gear 12 and the second jaw driving gear 13 rotate through a certain angle together, and when the extending direction of the connecting rod 14 is parallel to the front and rear directions, the slider crank mechanism reaches the dead point position. At the dead point, the first jaw drive gear 12 is about to disengage from the motor gear 11, the connecting rod 14 is about to touch the blocking portion 17, the slider 15 reaches the extreme position of the front end, and the jaw assembly is completely closed.
如图9和图10b所示,电机齿轮11继续沿顺时针方向旋转一个较小的角度,从而曲柄滑块机构越过死点位置。此时滑块15以及连杆14的弹性变形得到一定的释放,滑块15并不会向后移动,因此并不会影响钳口组件夹紧组织。连杆14接触阻挡部17,第一钳口驱动齿轮12的啮合部121与电机齿轮11脱离,电机齿轮11不能驱动第一钳口驱动齿轮12旋转,仅驱动第二钳口驱动齿轮13旋转。阻挡部17挡住连杆14,阻止第一钳口驱动齿轮12在组织对钳口组件施加的作用力下继续旋转,从而保持钳口组件一直处于闭合状态。As shown in FIG. 9 and FIG. 10 b , the motor gear 11 continues to rotate a small angle in the clockwise direction, so that the crank-slider mechanism crosses the dead center position. At this time, the elastic deformation of the slider 15 and the connecting rod 14 is released to a certain extent, and the slider 15 will not move backward, so the clamping structure of the jaw assembly will not be affected. The connecting rod 14 contacts the blocking portion 17, and the meshing portion 121 of the first jaw driving gear 12 disengages from the motor gear 11. The motor gear 11 cannot drive the first jaw driving gear 12 to rotate, but only drives the second jaw driving gear 13 to rotate. The blocking portion 17 blocks the connecting rod 14 to prevent the first jaw driving gear 12 from continuing to rotate under the force exerted by the tissue on the jaw assembly, thereby keeping the jaw assembly in a closed state all the time.
如图10c所示,第一钳口驱动齿轮12与电机齿轮11耦合,电机齿轮11继续沿顺时针方向转动时,第一钳口驱动齿轮12保持不动,而电机齿轮11驱动第二钳口驱动齿轮13沿逆时针方向转动,使得第一配合部123和第二配合部131分离。同时电机齿轮11通过切割驱动机构2驱动切割刀组件40执行击发。As shown in Figure 10c, the first jaw drive gear 12 is coupled with the motor gear 11, and when the motor gear 11 continues to rotate clockwise, the first jaw drive gear 12 remains stationary, while the motor gear 11 drives the second jaw The driving gear 13 rotates counterclockwise, so that the first matching portion 123 and the second matching portion 131 are separated. At the same time, the motor gear 11 drives the cutting knife assembly 40 through the cutting drive mechanism 2 to perform firing.
如图10d所示,击发结束后执行回刀动作,电机齿轮11沿逆时针方向旋转,电机齿轮11通过切割驱动机构2驱动切割刀组件40执行回刀动作。同时电机齿轮11驱动第二钳口驱动齿轮13沿顺时针方向旋转,第一配合部123和第二配合部131逐渐靠近。如图10e所示,在回刀结束时,第一配合部123和第二配合部131再次接合,此时钳口组件依然保持闭合。As shown in FIG. 10 d , after the firing is completed, the knife return action is performed, the motor gear 11 rotates counterclockwise, and the motor gear 11 drives the cutting knife assembly 40 through the cutting drive mechanism 2 to perform the knife return action. At the same time, the motor gear 11 drives the second jaw driving gear 13 to rotate clockwise, and the first matching portion 123 and the second matching portion 131 are gradually approached. As shown in Fig. 10e, when the knife return is finished, the first matching portion 123 and the second matching portion 131 are engaged again, and the jaw assembly is still closed at this time.
如图10f所示,电机齿轮11继续沿逆时针方向旋转,电机齿轮11驱动第二钳口驱动齿轮13沿顺时针方向旋转,第二配合部131推着第一配合部123使第一钳口驱动齿轮12也随第二钳口驱动齿轮13沿顺时针方向旋转。第一钳口驱动齿轮12转动一定角度后,第一钳口驱动齿轮12的啮合部121和电机齿轮11再次啮合,而后电机齿轮11可以驱动第一钳口驱动齿轮12沿顺时针方向旋转,使电动吻合器的钳口组件张开回到初始状态。As shown in Figure 10f, the motor gear 11 continues to rotate counterclockwise, the motor gear 11 drives the second jaw driving gear 13 to rotate clockwise, and the second matching part 131 pushes the first matching part 123 to make the first jaw The driving gear 12 also rotates clockwise with the second jaw driving gear 13 . After the first jaw driving gear 12 rotates a certain angle, the meshing portion 121 of the first jaw driving gear 12 meshes with the motor gear 11 again, and then the motor gear 11 can drive the first jaw driving gear 12 to rotate clockwise, so that The jaw assembly of the electric stapler is opened back to the initial state.
在另一实施例中,该实施例与上一实施例的不同之处在于,在传动机构处于第二状态时,钳口驱动件与动力模块耦合,并且钳口驱动件和运动转换件处于曲柄滑块机构的死点位置。即在传动机构处于第二状态时,钳口驱动件和运动转换件处于曲柄滑块机构的死点位置。在死点位置曲柄滑块机构的曲柄(钳口驱动件)和连杆(运动转换件)处于同一直线的位置,即钳口驱动件的轴心与运动转换件的连接位置的连线和运动转换件共线。在本实施例中,电机将连杆14驱动到其死点位置时,第一钳口驱动齿轮12的啮合部121与电机齿轮11脱离,此时钳口组件闭合,因第一钳口驱动齿轮12的啮合部121与电机齿轮11脱离,电机齿轮11不能驱动第一钳口驱动齿轮12继续旋转。运动转换件不能驱动钳口驱动件运动,曲柄滑块机构实现自锁使钳口组件能够保持闭合状态。In another embodiment, the difference between this embodiment and the previous embodiment is that when the transmission mechanism is in the second state, the jaw driving part is coupled with the power module, and the jaw driving part and the motion conversion part are in the crank The dead center position of the slider mechanism. That is, when the transmission mechanism is in the second state, the jaw driving member and the motion conversion member are at the dead point of the slider crank mechanism. At the dead point, the crank (jaw driver) and connecting rod (motion converter) of the crank-slider mechanism are at the same straight line, that is, the connection line and motion between the axis of the jaw driver and the connection position of the motion converter Transitions are collinear. In this embodiment, when the motor drives the connecting rod 14 to its dead point position, the meshing portion 121 of the first jaw drive gear 12 is disengaged from the motor gear 11, and the jaw assembly is closed at this time, because the first jaw drive gear The meshing part 121 of 12 is disengaged from the motor gear 11, and the motor gear 11 cannot drive the first jaw driving gear 12 to continue to rotate. The motion converting part cannot drive the jaw driving part to move, and the crank slider mechanism realizes self-locking so that the jaw assembly can maintain a closed state.
在该实施例中,阻挡部17并不是必须的,为了进一步增加稳定性,可选地,电动吻合器还包括阻挡部17,阻挡部17位于套管202的轴线的一侧;在运动转换件带动套管202向前运动的过程中,阻挡部17能够接触运动转换件并阻挡运动转换件,使运动转换件限位于死点位置。阻挡部17可以使运动转换件稳定地保持在死点位置,进而钳口组件的闭合状态可以保持稳定。In this embodiment, the blocking portion 17 is not necessary, in order to further increase the stability, optionally, the electric stapler also includes a blocking portion 17, and the blocking portion 17 is located on one side of the axis of the sleeve 202; During the process of driving the sleeve 202 to move forward, the blocking part 17 can contact the motion conversion part and block the motion conversion part, so that the motion conversion part is limited to the dead point position. The blocking portion 17 can keep the motion conversion member stably at the dead point, so that the closed state of the jaw assembly can be kept stable.
通过钳口驱动机构的曲柄滑块机构的死点特性,在连杆14处于死点位置时,可以实现自锁,即使套管202或与套管202连接的滑块15受到钳口组件的力,套管202或与套管202连接的滑块15也不能驱动连杆14转动,因此,简化了钳口驱动机构或者说钳口闭合保持结构,可以不设置单独的锁定机构,降低了用户的操作难度、减少了部件的数量,简化了装置的结构。Through the dead point characteristic of the slider crank mechanism of the jaw drive mechanism, when the connecting rod 14 is at the dead point position, self-locking can be realized, even if the sleeve 202 or the slider 15 connected with the sleeve 202 is under the force of the jaw assembly , the sleeve 202 or the slider 15 connected with the sleeve 202 cannot drive the connecting rod 14 to rotate. Therefore, the jaw driving mechanism or the jaw closing and maintaining structure is simplified, and a separate locking mechanism may not be provided, which reduces the user's labor cost. The operation is difficult, the number of parts is reduced, and the structure of the device is simplified.
由上述描述可知,电动吻合器还包括切割刀组件40和与切割刀组件40连接的芯轴组件;传动机构还包括切割驱动机构2,切割驱动机构2驱动芯轴组件运动,从而驱动切割刀组件40前进或后退;切割驱动机构2包括切割驱动件21,在第一状态时,切割驱动件21与芯轴组件分离;在第二状态时,切割驱动件21与芯轴组件接合以驱动芯轴组件运动,从而驱动切割刀组件40前进或后退。切割驱动机构结构简单可靠,排布合理,结构紧凑,使电动吻合器的尺寸和重量都较小,适合医生使用。It can be seen from the above description that the electric stapler also includes a cutting knife assembly 40 and a mandrel assembly connected to the cutting knife assembly 40; the transmission mechanism also includes a cutting drive mechanism 2, which drives the mandrel assembly to move, thereby driving the cutting knife assembly 40 forward or backward; the cutting drive mechanism 2 includes a cutting drive member 21, and in the first state, the cutting drive member 21 is separated from the mandrel assembly; in the second state, the cutting drive member 21 is engaged with the mandrel assembly to drive the mandrel The assembly moves to drive the cutter assembly 40 forward or backward. The cutting driving mechanism has a simple and reliable structure, reasonable arrangement and compact structure, so that the size and weight of the electric stapler are small and suitable for use by doctors.
传动机构的钳口驱动机构1和切割驱动机构2相互关联,使钳口的打开闭合与切割刀的前进后退可以按照电动吻合器切割缝合组织的过程进行。The jaw driving mechanism 1 and the cutting driving mechanism 2 of the transmission mechanism are interrelated, so that the opening and closing of the jaws and the forward and backward movement of the cutting knife can be carried out according to the process of cutting and suturing tissue by an electric stapler.
在本实施例中,在第一状态时,切割驱动件21的远端与芯轴组件的近端间隔设置;在第二状态时,切割驱动件21的远端与芯轴组件的近端配接以驱动芯轴组件沿第一方向运动,从而驱动切割刀组件40前进。其中元件A与元件B配接是指元件A与元件B至少部分接触,在外力作用下,元件A能驱动元件B运动。也就是说在第一状态时,切割驱动件21的远端与芯轴组件的近端之间存在“空行程”,在第二状态时,切割驱动件21已移动完该“空行程”而与芯轴组件配接,从而可以驱动芯轴组件沿第一方向运动。该技术方案结构简单可靠,整体排布合理,使得结构紧凑,产品尺寸较小,可减轻整体重量,适合医生使用。In this embodiment, in the first state, the distal end of the cutting driver 21 is spaced apart from the proximal end of the mandrel assembly; Then drive the mandrel assembly to move along the first direction, thereby driving the cutting knife assembly 40 to move forward. The coupling between component A and component B means that component A and component B are in at least partial contact, and component A can drive component B to move under the action of external force. That is to say, in the first state, there is an "idle stroke" between the distal end of the cutting drive member 21 and the proximal end of the mandrel assembly, and in the second state, the cutting drive member 21 has moved the "idle stroke" and Matched with the mandrel assembly, so as to drive the mandrel assembly to move along the first direction. The technical scheme has a simple and reliable structure, and the overall arrangement is reasonable, so that the structure is compact, the product size is small, the overall weight can be reduced, and it is suitable for doctors to use.
如图1至图5、图11至图15e所示,切割驱动机构2还包括转换组件。在第二状态时,转换组件在切割驱动件21的作用下,驱动芯轴组件沿第二方向运动以驱动切割刀组件40后退,第二方向与第一方向相反。转换组件的存在使得芯轴组件能够被驱动以沿第二方向运动,由于芯轴组件与切割刀组件40连接,因此使得切割刀组件40可以后退,进而便于钳口组件打开,以满足手术的要求。转换组件包括运动件24和运动引导件22,运动件24与芯轴组件连接;在切割驱动件21的作用下,运动件24受运动引导件22的引导运动至与切割驱动件21接合,从而驱动芯轴组件沿第二方向运动。更为具体地,运动件24包括与芯轴组件枢转连接的枢转端,和自枢转端向外延伸的第一端和第二端。在切割驱动件21驱动芯轴组件沿第一方向运动时,第一端受运动引导件22的作用运动至与切割驱动件21接合。在切割驱动件21驱动运动件24进而驱动芯轴组件沿第二方向运动时,第二端受运动引导件22的作用运动以使第一端与切割驱动件21分离。转换组件的运动件24和运动引导件22的相互配合,使得芯轴组件能够退回初始位置。转换组件的整体结构简单紧凑,可靠性高。As shown in Fig. 1 to Fig. 5 and Fig. 11 to Fig. 15e, the cutting drive mechanism 2 further includes a conversion assembly. In the second state, under the action of the cutting drive member 21 , the conversion assembly drives the mandrel assembly to move in a second direction to drive the cutting knife assembly 40 backward, and the second direction is opposite to the first direction. The presence of the conversion assembly enables the mandrel assembly to be driven to move in the second direction. Since the mandrel assembly is connected to the cutting knife assembly 40, the cutting knife assembly 40 can retreat, thereby facilitating the opening of the jaw assembly to meet the requirements of the operation. . The conversion assembly includes a moving part 24 and a moving guide part 22, and the moving part 24 is connected with the mandrel assembly; under the action of the cutting drive part 21, the moving part 24 is guided by the moving guide part 22 to move to engage with the cutting drive part 21, thereby The drive spindle assembly moves in a second direction. More specifically, the moving member 24 includes a pivot end pivotally connected with the spindle assembly, and a first end and a second end extending outward from the pivot end. When the cutting driving member 21 drives the mandrel assembly to move along the first direction, the first end moves to engage with the cutting driving member 21 under the action of the moving guide 22 . When the cutting driving member 21 drives the moving member 24 to drive the mandrel assembly to move in the second direction, the second end is moved by the moving guide 22 so that the first end is separated from the cutting driving member 21 . The mutual cooperation between the moving part 24 of the conversion assembly and the moving guide part 22 enables the mandrel assembly to return to the initial position. The overall structure of the conversion assembly is simple and compact, and has high reliability.
更为具体地,芯轴组件包括芯轴201和芯轴201的近端连接的连接件23,运动件24的枢转端可以通过销轴25能够枢转地连接于连接件23。芯轴201的远端连接于切割刀组件40,芯轴201驱动切割刀组件40向前运动执行击发动作或向后运动执行退刀动作。运动件24第一端设置有嵌入部241,切割驱动件21的远端设置有接合槽211,嵌入部241嵌入接合槽211以使运动件24和切割驱动件21接合,或者从接合槽211脱出以使运动件24和切割驱动件21分离。嵌入部241嵌入接合槽211时,接合槽211的侧壁可以抵接嵌入部241的前端面242,使切割驱动件21和连接件23接合,从而带动运动 件24和连接件23一起向后运动。嵌入部241的前端面242可以为弧面或斜面,且前端面242先进入接合槽211的部分的回转半径小于或等于后进入接合槽211的部分的回转半径。在退刀时,使嵌入部241容易从接合槽211中退出,避免运动件24卡阻。More specifically, the mandrel assembly includes a mandrel 201 and a connecting member 23 connecting the proximal end of the mandrel 201 , and the pivoting end of the moving member 24 can be pivotally connected to the connecting member 23 through a pin 25 . The distal end of the mandrel 201 is connected to the cutting knife assembly 40, and the mandrel 201 drives the cutting knife assembly 40 to move forward to perform a firing action or to move backward to perform a knife retracting action. The first end of the moving part 24 is provided with an embedding part 241, and the distal end of the cutting driving part 21 is provided with an engagement groove 211, and the embedding part 241 is inserted into the engaging groove 211 so that the moving part 24 is engaged with the cutting driving part 21, or is disengaged from the engaging groove 211 In order to separate the moving part 24 from the cutting driving part 21 . When the embedded part 241 is inserted into the engaging groove 211, the side wall of the engaging groove 211 can abut against the front end surface 242 of the embedded part 241, so that the cutting driving part 21 and the connecting part 23 are engaged, thereby driving the moving part 24 and the connecting part 23 to move backward together . The front end surface 242 of the embedded part 241 can be an arc surface or an inclined surface, and the radius of gyration of the part of the front end surface 242 entering the engaging groove 211 first is smaller than or equal to the turning radius of the part entering the engaging groove 211 later. When the knife is withdrawn, the embedded part 241 is easily withdrawn from the engagement groove 211 to prevent the moving part 24 from being blocked.
连接件23设置有朝向切割驱动件21的接触面231,接触面231可以是连接件23最近端的端面,通过切割驱动件21推抵接触面231,连接件23可以被推动而向前运动。切割驱动件21沿电动吻合器的前后方向延伸,切割驱动件21和连接件23能够沿前后方向相对滑动地连接,例如切割驱动件21可以设置有滑槽,连接件23可以设置有滑动配合部,滑动配合部嵌入滑槽。这样使得切割驱动件的运动更加顺畅平稳。切割驱动件21与电机齿轮11啮合,电机齿轮11可以驱动切割驱动件21沿前后方向运动。切割驱动件21设置有接合槽211,运动件24可以部分地嵌入接合槽211,从而使运动件24可以随切割驱动件21一起沿前后方向运动。运动件24能够使切割驱动件21和连接件23接合而使切割驱动件21和芯轴201一起沿前后方向运动,并且,运动件24能够使切割驱动件21和连接件23分离而允许切割驱动件21相对于芯轴201沿前后方向运动。The connecting part 23 is provided with a contact surface 231 facing the cutting drive part 21. The contact surface 231 may be the most proximal end face of the connecting part 23. When the cutting driving part 21 pushes against the contact surface 231, the connecting part 23 can be pushed to move forward. The cutting drive part 21 extends along the front and rear direction of the electric stapler, and the cutting drive part 21 and the connecting part 23 can be relatively slidably connected along the front and rear direction, for example, the cutting driving part 21 can be provided with a chute, and the connecting part 23 can be provided with a sliding fitting part , the sliding fit part is embedded in the chute. This results in smoother and more stable movement of the cutting drive. The cutting driving member 21 meshes with the motor gear 11, and the motor gear 11 can drive the cutting driving member 21 to move in the forward and backward direction. The cutting driving part 21 is provided with an engaging groove 211 , and the moving part 24 can be partially embedded in the engaging groove 211 , so that the moving part 24 can move along with the cutting driving part 21 in the forward and backward direction. The moving part 24 can engage the cutting drive part 21 and the connecting part 23 so that the cutting driving part 21 and the mandrel 201 move together in the forward and backward direction, and the moving part 24 can separate the cutting driving part 21 and the connecting part 23 to allow the cutting drive The member 21 moves in the forward and backward direction relative to the mandrel 201 .
在本实施例中,切割驱动件21为齿条,当然可以理解地是,切割驱动件21也可以是丝杠螺母等其他可以实现直线运动的机构。In this embodiment, the cutting driving member 21 is a rack. Of course, it can be understood that the cutting driving member 21 may also be a screw nut or other mechanism capable of linear motion.
运动引导件22可以固定连接于操作组件10的壳体(即,电动吻合器的壳体),或者与操作组件10的壳体(即,电动吻合器的壳体)一体地形成。运动引导件22包括凹陷部以及位于凹陷部两侧的引导面,引导面包括第一引导面和第二引导面;运动件24的第一端通过与第一引导面滑动地接触而绕其枢转端运动至与切割驱动件21接合,运动件24的第二端通过与第二引导面滑动地接触而绕其枢转端运动以使第一端与切割驱动件21分离。在本实施例中,第一引导面包括第一斜面221和平面223,第二引导面包括第二斜面222,第一斜面221、第二斜面222和平面223均朝向运动件24。当然可以理解地是,第一引导面和第二引导面也可以是弧面等其他形式。The motion guide 22 can be fixedly connected to the housing of the operating assembly 10 (ie, the housing of the electric stapler), or integrally formed with the housing of the operating assembly 10 (ie, the housing of the electric stapler). The motion guide 22 includes a concave portion and guiding surfaces positioned on both sides of the concave portion, the guiding surface includes a first guiding surface and a second guiding surface; the first end of the moving member 24 pivots around it by slidingly contacting the first guiding surface. The swivel end is moved into engagement with the cutting drive 21 and the second end of the moving member 24 is moved about its pivoted end to disengage the first end from the cutting drive 21 by slidingly contacting the second guide surface. In this embodiment, the first guiding surface includes a first inclined surface 221 and a flat surface 223 , the second guiding surface includes a second inclined surface 222 , and the first inclined surface 221 , the second inclined surface 222 and the flat surface 223 all face the moving member 24 . Of course, it can be understood that the first guiding surface and the second guiding surface may also be in other forms such as arc surfaces.
第一斜面221可以位于第二斜面222的前侧,第一斜面221越向前延伸越靠近运动件24所在的一侧(例如上侧),第二斜面222越向后延伸越靠近运动件24所在的一侧。平面223可以位于第一斜面221的前侧,平面223与前后方向平行。在运动件24随着连接件23沿前后方向运动时,运动件24能够接触到第一斜面221和第二斜面222,从而使得运动件24转动。在运动件24随着连接件23沿前后方向运动时,运动件24可以保持接触平面223,从而使运动件24可以保持不转动。在切割驱动件21向前运动,运动件24和第一斜面221接触而转动时,运动件24使切割驱动件21和连接件23接合,但 是连接件23并非由于切割驱动件21和连接件23连接而向前运动,使切割驱动件21和连接件23连接是为了连接件23可以随切割驱动件21向后运动。在切割驱动件21向后运动,运动件24和第二斜面222接触而转动时,运动件24使切割驱动件21和连接件23分离,从而允许切割驱动件21相对于连接件23沿前后方向运动。The first inclined surface 221 can be located on the front side of the second inclined surface 222, the first inclined surface 221 extends forward and gets closer to the side (such as the upper side) where the moving part 24 is located, and the second inclined surface 222 extends backward and gets closer to the moving part 24 side of where. The plane 223 may be located at the front side of the first slope 221, and the plane 223 is parallel to the front-rear direction. When the moving part 24 moves forward and backward along with the connecting part 23 , the moving part 24 can contact the first slope 221 and the second slope 222 , so that the moving part 24 can rotate. When the moving part 24 moves forward and backward along with the connecting part 23, the moving part 24 can keep in contact with the plane 223, so that the moving part 24 can keep not rotating. When the cutting drive 21 moves forward and the moving part 24 contacts the first inclined surface 221 to rotate, the moving part 24 engages the cutting driving part 21 and the connecting part 23, but the connecting part 23 is not due to the cutting driving part 21 and the connecting part 23. The cutting driving part 21 and the connecting part 23 are connected so that the connecting part 23 can move backward with the cutting driving part 21 . When the cutting driving part 21 moves backward and the moving part 24 is in contact with the second inclined surface 222 to rotate, the moving part 24 separates the cutting driving part 21 from the connecting part 23, thereby allowing the cutting driving part 21 to move forward and backward relative to the connecting part 23. sports.
通过图1至图5和图15a至图15e,说明在电动吻合器切割缝合组织的过程中切割驱动机构2的工作状态。1 to 5 and 15a to 15e illustrate the working state of the cutting drive mechanism 2 during the process of cutting and suturing tissue by the electric stapler.
如图15a所示,在初始状态时钳口组件是打开的,切割刀组件处于近端,切割驱动件21和连接件23的接触面231具有间隔。电机齿轮11旋转,通过钳口驱动机构1使钳口组件闭合,同时电机齿轮11驱动切割驱动件21向前运动一段距离。如图9和15b所示,当钳口组件完全闭合时,即连杆14接触到阻挡部17时,切割驱动件21也恰好抵接于接触面231,切割驱动件21继续向前移动就可以使连接件23向前推动切割刀组件40执行击发动作。随着连接件23向前运动,运动件24的第一端接触到第一斜面221。As shown in FIG. 15 a , the jaw assembly is opened in the initial state, the cutting knife assembly is at the proximal end, and the contact surface 231 of the cutting driving member 21 and the connecting member 23 has a gap. The motor gear 11 rotates, and the jaw assembly is closed by the jaw drive mechanism 1, and at the same time, the motor gear 11 drives the cutting drive member 21 to move forward for a certain distance. As shown in Figures 9 and 15b, when the jaw assembly is fully closed, that is, when the connecting rod 14 touches the blocking portion 17, the cutting driver 21 just abuts against the contact surface 231, and the cutting driver 21 can continue to move forward. Make the connecting member 23 push the cutter assembly 40 forward to execute the firing action. As the connecting member 23 moves forward, the first end of the moving member 24 contacts the first inclined surface 221 .
如15c所示,切割驱动件21推着连接件23一起向前运动,运动件24的第一端接触到第一斜面221后,运动件24在第一斜面221的作用下沿图15c的顺时针方向转动,使嵌入部241嵌入接合槽211。随着连接件23继续向前运动,运动件24的底面保持与平面223接触。击发动作结束后开始执行退刀动作,电机齿轮11反向旋转,驱动切割驱动件21向后移动,接合槽211的侧壁抵接于嵌入部241,运动件24和连接件23可以随着切割驱动件21向后移动。As shown in 15c, the cutting driving part 21 pushes the connecting part 23 and moves forward together. After the first end of the moving part 24 touches the first inclined surface 221, the moving part 24 moves along the direction shown in FIG. 15c under the action of the first inclined surface 221. Rotate clockwise, so that the embedded portion 241 is inserted into the engagement groove 211 . As the connecting piece 23 continues to move forward, the bottom surface of the moving piece 24 keeps in contact with the plane 223 . After the firing action is completed, the knife retraction action is started, the motor gear 11 rotates in reverse, and the cutting driver 21 is driven to move backward, the side wall of the engagement groove 211 abuts against the embedded part 241, and the moving part 24 and the connecting part 23 can follow the cutting process. The driving member 21 moves backward.
如图15d和图15e所示,随着切割驱动件21向后移动,运动件24的第二端接触到第二斜面222后,运动件24在第二斜面222的作用下沿图15d的逆时针方向转动,使嵌入部241退出接合槽211。嵌入部241退出接合槽211后,运动件24及与其连接的连接件23不再随着切割驱动件21向后移动,此时退刀动作已经完成。电机齿轮11驱动切割驱动件21继续向后运动,回到如图15a所示的初始状态。As shown in Figure 15d and Figure 15e, as the cutting drive member 21 moves backward, after the second end of the movable member 24 touches the second inclined surface 222, the movable member 24 moves along the reverse direction of Figure 15d under the action of the second inclined surface 222. Turn clockwise, so that the embedded part 241 withdraws from the engagement groove 211 . After the embedding part 241 withdraws from the engagement groove 211, the moving part 24 and the connecting part 23 connected thereto no longer move backward with the cutting driving part 21, and at this moment the knife retracting action has been completed. The motor gear 11 drives the cutting drive member 21 to continue to move backward, returning to the initial state as shown in Figure 15a.
(第二实施方式)(second embodiment)
第二实施方式的电动吻合器与第一实施方式的电动吻合器整体相似,切割驱动机构的具体结构有所差异,对于第二实施方式的切割驱动机构与第一实施方式的切割驱动机构相同或相似的部件采用相同的附图标记表示,并省略对这些相同或相似的部件的详细说明。如图16至图21e所示,切割驱动机构2包括切割驱动件21和转换组件。转换组件包括运动件24和运动引导件22,运动件24与切割驱动件21连接;在切割驱动件21的作用下,运动件24受运动引导件22的引导运动至与芯轴组件接合,从而驱动芯轴组 件沿第二方向运动。更为具体地,运动件24包括与切割驱动件21枢转连接的枢转端,和自枢转端向外延伸的第一端和第二端。在切割驱动件21沿第一方向运动时,第一端受运动引导件22的作用运动至与芯轴组件接合;在切割驱动件21驱动运动件24进而驱动芯轴组件沿第二方向运动时,第二端受运动引导件22的作用运动以使第一端与芯轴组件分离。转换组件的运动件24和运动引导件22的相互配合,使得芯轴组件能够退回初始位置。转换组件的整体结构简单紧凑,可靠性高。The electric stapler of the second embodiment is generally similar to the electric stapler of the first embodiment, and the specific structure of the cutting drive mechanism is different. The cutting drive mechanism of the second embodiment is the same as that of the first embodiment or Similar components are denoted by the same reference numerals, and detailed descriptions of these same or similar components are omitted. As shown in Fig. 16 to Fig. 21e, the cutting driving mechanism 2 includes a cutting driving member 21 and a conversion assembly. The conversion assembly includes a moving part 24 and a moving guide part 22, and the moving part 24 is connected with the cutting drive part 21; under the action of the cutting driving part 21, the moving part 24 is guided by the moving guide part 22 to move to engage with the mandrel assembly, thereby The drive spindle assembly moves in a second direction. More specifically, the moving member 24 includes a pivot end pivotally connected with the cutting drive member 21 , and a first end and a second end extending outward from the pivot end. When the cutting driver 21 moves along the first direction, the first end moves to engage with the mandrel assembly under the action of the motion guide 22; when the cutting driver 21 drives the moving part 24 and then drives the mandrel assembly to move along the second direction , the second end is moved by the motion guide 22 so that the first end is separated from the mandrel assembly. The mutual cooperation between the moving part 24 of the conversion assembly and the moving guide part 22 enables the mandrel assembly to return to the initial position. The overall structure of the conversion assembly is simple and compact, and has high reliability.
运动引导件22包括凹陷部以及位于凹陷部两侧的引导面,引导面包括第一引导面和第二引导面;第一端通过与第一引导面滑动地接触而绕枢转端运动至与芯轴组件接合,第二端通过与第二引导面滑动地接触而绕枢转端运动以使第一端与芯轴组件分离。在本实施例中,第一引导面包括第一斜面221和平面223,第二引导面包括第二斜面222,第一斜面221、第二斜面222和平面223均朝向运动件24。当然可以理解地是,第一引导面和第二引导面也可以是弧面等其他形式。芯轴组件包括芯轴201和与芯轴201的近端连接的连接件23;第一端设置有嵌入部241,连接件23设置有接合槽211,嵌入部241嵌入接合槽211以使运动件24和芯轴组件接合,或者从接合槽211脱出以使运动件和芯轴组件分离。The motion guide 22 includes a concave portion and guiding surfaces on both sides of the concave portion, the guiding surface includes a first guiding surface and a second guiding surface; the first end moves around the pivoting end to be in contact with the first guiding surface by slidingly contacting the first guiding surface. The spindle assembly is engaged and the second end is moved about the pivot end to disengage the first end from the spindle assembly by slidingly contacting the second guide surface. In this embodiment, the first guiding surface includes a first inclined surface 221 and a flat surface 223 , the second guiding surface includes a second inclined surface 222 , and the first inclined surface 221 , the second inclined surface 222 and the flat surface 223 all face the moving member 24 . Of course, it can be understood that the first guiding surface and the second guiding surface may also be in other forms such as arc surfaces. The mandrel assembly includes a mandrel 201 and a connector 23 connected to the proximal end of the mandrel 201; the first end is provided with an inlay 241, the connector 23 is provided with an engaging groove 211, and the inlay 241 is embedded in the engaging groove 211 so that the moving part 24 engages with the mandrel assembly, or disengages from the engaging groove 211 to separate the moving part from the mandrel assembly.
运动引导件22还包括挖空部,该挖空部位于凹陷部和/或引导面的下方,本实施例中,挖空部为设置于凹陷部和引导面下方的开槽,该开槽的开口朝向运动引导件22的近端面,通过设置开槽使得运动引导件22具有弹性。当然可以理解地是,开槽可以仅设置在引导面下方,挖空部也可以是位于凹陷部和/或引导面下方的凹槽,同样也使得运动引导件22具有弹性。在其他实施例中,运动引导件22的第二斜面222本身具有弹性或者包括例如弹簧的弹性部。运动引导件22具有弹性使得在运动件24随切割驱动件21向后运动时,运动引导件22可以被压缩,防止运动件24卡死。The motion guide 22 also includes a hollowed-out part, which is located below the recessed part and/or the guide surface. In this embodiment, the hollowed-out part is a slot arranged under the recessed part and the guide surface. The opening faces the proximal surface of the motion guide 22 , and the motion guide 22 is elastic by providing a slot. Of course, it can be understood that the slot can be only provided under the guide surface, and the hollowed out part can also be a groove located under the recessed part and/or the guide surface, which also makes the movement guide 22 elastic. In other embodiments, the second slope 222 of the movement guide 22 itself has elasticity or includes an elastic part such as a spring. The movement guide 22 has elasticity so that when the movement member 24 moves backward with the cutting drive member 21, the movement guide 22 can be compressed to prevent the movement member 24 from being stuck.
运动件24的枢转端通过销轴25能够枢转地连接于切割驱动件21的前端。运动件24设置有嵌入部241,在切割驱动件21向后回退时,嵌入部241的前端面242可以抵接于接合槽211的侧壁,从而带动连接件23一起向后运动。The pivoting end of the moving member 24 is pivotably connected to the front end of the cutting driving member 21 through a pin shaft 25 . The moving part 24 is provided with an embedded part 241 , and when the cutting driving part 21 retreats backward, the front end surface 242 of the embedded part 241 can abut against the sidewall of the engagement groove 211 , thereby driving the connecting part 23 to move backward together.
连接件23设置有接合槽211,运动件24可以部分地嵌入接合槽211,从而使连接件23可以随运动件24及切割驱动件21一起沿前后方向运动。连接件23设置有接触面231和第三斜面232,在电动吻合器的左右方向上,两个接触面231可以夹着一个第三斜面232。第三斜面232延伸至接合槽211的开口位置。第三斜面232可以引导嵌入部241移动到接合槽211的开口位置。The connecting part 23 is provided with an engaging groove 211 , and the moving part 24 can be partially embedded in the engaging groove 211 , so that the connecting part 23 can move along the front and rear directions together with the moving part 24 and the cutting driving part 21 . The connecting piece 23 is provided with a contact surface 231 and a third inclined surface 232 , and in the left-right direction of the electric stapler, a third inclined surface 232 can be sandwiched between the two contact surfaces 231 . The third slope 232 extends to the opening of the engaging groove 211 . The third slope 232 can guide the embedding part 241 to move to the opening position of the engaging groove 211 .
通过图1至图5和图21a至图21e,说明在电动吻合器切割缝合组织的过程中切割驱动机构2的工作状态。1 to 5 and 21a to 21e illustrate the working state of the cutting drive mechanism 2 during the process of the electric stapler cutting and suturing tissue.
如图21a和图21b所示,在初始状态时钳口组件是打开的,切割刀组件处于近端,切割驱动件21的前端和连接件23的接触面231具有间隔。切割驱动件21不推动连接件23,连接件23保持不动。运动件24沿着第三斜面232滑移,使运动件24绕销轴25沿图21a的逆时针方向转动,第三斜面232将嵌入部241引导至接合槽211的开口位置。As shown in Fig. 21a and Fig. 21b, the jaw assembly is opened in the initial state, the cutting knife assembly is at the proximal end, and there is a gap between the front end of the cutting driving element 21 and the contact surface 231 of the connecting element 23. The cutting driving part 21 does not push the connecting part 23, and the connecting part 23 remains still. The moving part 24 slides along the third slope 232 , so that the moving part 24 rotates around the pin 25 in the counterclockwise direction of FIG.
如图21c所示,切割驱动件21继续向前运动,运动件24的第一端碰到第一斜面221,使运动件24沿图21c中的顺时针方向转动,嵌入部241嵌入接合槽211,并且切割驱动件的前端接触到接触面231,切割驱动件21可以推着连接件23一起向前运动,推动切割刀组件执行击发动作。随着连接件23继续向前运动,运动件24的底面保持与平面223接触。As shown in FIG. 21c, the cutting drive member 21 continues to move forward, and the first end of the moving member 24 touches the first inclined surface 221, so that the moving member 24 rotates clockwise in FIG. , and the front end of the cutting drive part contacts the contact surface 231, the cutting drive part 21 can push the connecting part 23 to move forward together, and push the cutting knife assembly to execute the firing action. As the connecting piece 23 continues to move forward, the bottom surface of the moving piece 24 keeps in contact with the plane 223 .
如图21d所示,击发动作结束后开始执行退刀动作,电机齿轮11反向旋转,驱动切割驱动件21向后移动,嵌入部241抵接于接合槽211的侧壁,嵌入部241钩住连接件23,使连接件23可以随着切割驱动件21向后移动。As shown in Figure 21d, after the firing action is completed, the knife retraction action is started, the motor gear 11 rotates in the opposite direction, and the cutting driver 21 is driven to move backward, the embedded part 241 abuts against the side wall of the engaging groove 211, and the embedded part 241 is hooked. The connecting piece 23 enables the connecting piece 23 to move backward along with the cutting drive 21 .
如图21e所示,随着切割驱动件21向后移动,运动件24的第二端接触到第二斜面222后,运动件24在第二斜面222的作用下沿图21e的逆时针方向转动,使嵌入部241退出接合槽211。嵌入部241退出接合槽211后,连接件23不再随着切割驱动件21向后移动,切割刀组件也就不再向后运动,此时退刀动作已经完成。As shown in FIG. 21e, as the cutting driving member 21 moves backward, after the second end of the moving member 24 touches the second inclined surface 222, the moving member 24 rotates counterclockwise in the direction of FIG. 21e under the action of the second inclined surface 222. , so that the embedded portion 241 withdraws from the engagement groove 211 . After the embedded part 241 withdraws from the engaging groove 211, the connecting member 23 no longer moves backward along with the cutting driving member 21, and the cutting knife assembly no longer moves backward. At this time, the knife retracting action has been completed.
电机齿轮11驱动切割驱动件21继续向后运动,运动件24在运动引导件22的弹性作用和第三斜面232的作用下沿图21e的顺时针方向转动,回到如图21a所示的初始状态。The motor gear 11 drives the cutting drive part 21 to continue to move backward, and the moving part 24 rotates clockwise in the clockwise direction of Fig. 21e under the elastic action of the moving guide part 22 and the action of the third inclined surface 232, and returns to the initial position as shown in Fig. 21a. state.
本申请中的电动外科器械能够同时完成吻合和切割,电动外科器械包括端部执行器、钳口驱动机构、切割驱动机构以及动力模块等。电动外科器械包括但不限于电动吻合器、缝合设备、手术机器人。虽然本申请以电动吻合器为例对电动外科器械进行具体说明,但本申请中的电动外科器械不限于电动吻合器。The electric surgical instrument in this application can complete anastomosis and cutting at the same time, and the electric surgical instrument includes an end effector, a jaw driving mechanism, a cutting driving mechanism, a power module, and the like. Electric surgical instruments include, but are not limited to, electric staplers, suturing equipment, and surgical robots. Although the present application uses an electric stapler as an example to describe the electric surgical instrument, the electric surgical instrument in the present application is not limited to the electric stapler.
可以理解,虽然上面介绍了钳口驱动机构和切割驱动机构。然而,本申请的钳口驱动机构和切割驱动机构不必同时出现。例如,钳口驱动机构可以和任何适当的现有的切割驱动机构组合使用以实现吻合器的各种功能,同样,切割驱动机构亦可以和任何适当的现有的钳口驱动机构组合使用以实现吻合器的各种功能。It can be understood that although the jaw drive mechanism and the cutting drive mechanism have been described above. However, the jaw drive mechanism and cutting drive mechanism of the present application do not have to be present at the same time. For example, the jaw driving mechanism can be used in combination with any suitable existing cutting driving mechanism to realize various functions of the stapler, and similarly, the cutting driving mechanism can also be used in combination with any suitable existing jaw driving mechanism to realize Various functions of the stapler.
虽使用上述实施方式对本申请进行了详细说明,但对于本领域技术人员来说,本申 请显然并不限定于在本说明书中说明的实施方式。本申请能够在不脱离由权利要求书所确定的本申请的主旨以及范围的前提下加以修改并作为变更实施方式加以实施。因此,本说明书中的记载以示例说明为目的,对于本申请并不具有任何限制性的含义。Although the present application has been described in detail using the above-mentioned embodiments, it is obvious to those skilled in the art that the present application is not limited to the embodiments described in this specification. The present application can be modified and implemented as modified embodiments without departing from the spirit and scope of the present application defined by the claims. Therefore, the description in this specification is for the purpose of illustration and does not have any restrictive meaning to this application.

Claims (22)

  1. 一种电动外科器械,其包括钳口组件、套管、传动机构以及动力模块;所述套管连接于所述钳口组件的近端;所述动力模块用于为所述传动机构提供动力;其特征在于,An electric surgical instrument, which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism; It is characterized in that,
    所述传动机构包括钳口驱动机构,所述钳口驱动机构包括钳口驱动件和可转动地连接于所述钳口驱动件的运动转换件;通过所述运动转换件连接所述钳口驱动件和所述套管,所述运动转换件驱动所述套管运动,从而驱动所述钳口组件打开或闭合;所述钳口驱动件、所述运动转换件及所述套管构成曲柄滑块机构;The transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving member and a motion converting member rotatably connected to the jaw driving member; the jaw driving is connected through the motion converting member part and the sleeve, the motion conversion part drives the sleeve to move, thereby driving the jaw assembly to open or close; the jaw drive part, the motion conversion part and the sleeve constitute a crank slider block mechanism;
    所述传动机构具有第一状态和第二状态,在所述第一状态时,所述钳口驱动件与所述动力模块接合;在所述第二状态时,所述钳口驱动件与所述动力模块耦合,并且所述钳口驱动件和所述运动转换件处于所述曲柄滑块机构的死点位置。The transmission mechanism has a first state and a second state. In the first state, the jaw driving member is engaged with the power module; in the second state, the jaw driving member is engaged with the power module. The power module is coupled, and the jaw drive member and the motion conversion member are at the dead point of the slider crank mechanism.
  2. 根据权利要求1所述的电动外科器械,其特征在于,所述电动外科器械还包括阻挡部,所述阻挡部用于将所述运动转换件限位于所述死点位置。The electric surgical instrument according to claim 1, characterized in that, the electric surgical instrument further comprises a blocking portion, and the blocking portion is used to limit the movement converting member to the dead center position.
  3. 一种电动外科器械,其包括钳口组件、套管、传动机构以及动力模块;所述套管连接于所述钳口组件的近端;所述动力模块用于为所述传动机构提供动力;其特征在于,An electric surgical instrument, which includes a jaw assembly, a sleeve, a transmission mechanism and a power module; the sleeve is connected to the proximal end of the jaw assembly; the power module is used to provide power for the transmission mechanism; It is characterized in that,
    所述传动机构包括钳口驱动机构,所述钳口驱动机构包括钳口驱动件和可转动地连接于所述钳口驱动件的运动转换件;通过所述运动转换件连接所述钳口驱动件和所述套管,所述运动转换件驱动所述套管运动,从而驱动所述钳口组件打开或闭合;所述钳口驱动件、所述运动转换件及所述套管构成曲柄滑块机构;The transmission mechanism includes a jaw driving mechanism, and the jaw driving mechanism includes a jaw driving member and a motion converting member rotatably connected to the jaw driving member; the jaw driving is connected through the motion converting member part and the sleeve, the motion conversion part drives the sleeve to move, thereby driving the jaw assembly to open or close; the jaw drive part, the motion conversion part and the sleeve constitute a crank slider block mechanism;
    所述传动机构具有第一状态和第二状态,在所述第一状态时,所述钳口驱动件与所述动力模块接合;在所述第二状态时,所述钳口驱动件与所述动力模块耦合,并且所述钳口驱动件和所述运动转换件越过所述曲柄滑块机构的死点位置;所述电动外科器械还包括阻挡部,所述阻挡部用于在所述运动转换件越过所述死点位置后阻挡所述运动转换件。The transmission mechanism has a first state and a second state. In the first state, the jaw driving member is engaged with the power module; in the second state, the jaw driving member is engaged with the power module. The power module is coupled, and the jaw driving part and the motion conversion part are over the dead center position of the slider crank mechanism; the electric surgical instrument also includes a blocking part, and the blocking part is used for The conversion member blocks the movement conversion member after it crosses the dead center position.
  4. 根据权利要求1或3所述的电动外科器械,其特征在于,所述钳口驱动件包括第一钳口驱动齿轮,在所述第一钳口驱动齿轮的周向上,所述第一钳口驱动齿轮包括啮合部和光滑部,在所述第一状态时,所述啮合部与所述动力模块接合;在所述第二状态时,所述光滑部与所述动力模块耦合。The electric surgical instrument according to claim 1 or 3, characterized in that, the jaw driving member comprises a first jaw driving gear, and in the circumferential direction of the first jaw driving gear, the first jaw The driving gear includes a meshing part and a smooth part. In the first state, the meshing part is engaged with the power module; in the second state, the smooth part is coupled with the power module.
  5. 根据权利要求4所述的电动外科器械,其特征在于,所述钳口驱动件还包括第二钳口驱动齿轮,所述第二钳口驱动齿轮与所述第一钳口驱动齿轮叠置;在所述第一状态 及所述第二状态时,所述第二钳口驱动齿轮均与所述动力模块接合;在所述光滑部处于与所述动力模块耦合状态时,所述第二钳口驱动齿轮能驱动所述第一钳口驱动齿轮由所述光滑部与所述动力模块耦合状态运动至所述啮合部与所述动力模块接合状态。The electric surgical instrument according to claim 4, wherein the jaw driving member further comprises a second jaw driving gear, and the second jaw driving gear overlaps with the first jaw driving gear; In the first state and the second state, the second jaw driving gear is engaged with the power module; when the smooth part is in the coupled state with the power module, the second jaw The mouth drive gear can drive the first jaw drive gear to move from the coupling state of the smooth part and the power module to the engagement state of the meshing part and the power module.
  6. 根据权利要求5所述的电动外科器械,其特征在于,所述第一钳口驱动齿轮设置有第一配合部,所述第二钳口驱动齿轮设置有第二配合部,在所述光滑部处于与所述动力模块耦合状态时,所述第一配合部与所述第二配合部相互配合以驱动所述第一钳口驱动齿轮运动。The electric surgical instrument according to claim 5, wherein the first jaw driving gear is provided with a first matching portion, the second jaw driving gear is provided with a second matching portion, and the smooth portion When in a coupled state with the power module, the first matching portion cooperates with the second matching portion to drive the first jaw driving gear to move.
  7. 根据权利要求6所述的电动外科器械,其特征在于,所述第一配合部为设置于所述第一钳口驱动齿轮的凹槽的端部,所述第二配合部为凸块,或者所述第一配合部为凸块,所述第二配合部为设置于所述第二钳口驱动齿轮的凹槽的端部;所述凸块与所述端部抵接使得所述第一钳口驱动齿轮能够从与所述动力模块耦合状态切换至与所述动力模块接合状态。The electric surgical instrument according to claim 6, wherein the first matching portion is an end portion of a groove provided on the first jaw driving gear, and the second matching portion is a bump, or The first fitting portion is a bump, and the second fitting portion is an end disposed on the groove of the second jaw drive gear; the bump abuts against the end so that the first The jaw drive gear can be switched from a coupled state with the power module to an engaged state with the power module.
  8. 根据权利要求5所述的电动外科器械,其特征在于,所述动力模块包括电机和连接于所述电机的输出轴的电机齿轮,在所述第一状态时,所述电机齿轮同时与所述第一钳口驱动齿轮和所述第二钳口驱动齿轮啮合;在所述第二状态时,所述电机齿轮与所述第一钳口驱动齿轮耦合,且与所述第二钳口驱动齿轮啮合。The electrical surgical instrument according to claim 5, wherein the power module comprises a motor and a motor gear connected to the output shaft of the motor, and in the first state, the motor gear is simultaneously connected with the The first jaw drive gear meshes with the second jaw drive gear; in the second state, the motor gear is coupled with the first jaw drive gear and with the second jaw drive gear engage.
  9. 根据权利要求8所述的电动外科器械,其特征在于,所述电机的轴线沿所述电动外科器械的前后方向延伸。The electric surgical instrument according to claim 8, wherein the axis of the motor extends in the front-rear direction of the electric surgical instrument.
  10. 根据权利要求1或3所述的电动外科器械,其特征在于,所述运动转换件包括连杆,所述连杆的一端能够转动地连接于所述钳口驱动件,所述连杆的另一端能够转动地连接于所述套管。The electric surgical instrument according to claim 1 or 3, characterized in that, the motion conversion member includes a connecting rod, one end of the connecting rod is rotatably connected to the jaw driving member, and the other end of the connecting rod One end is rotatably connected to the sleeve.
  11. 根据权利要求1或3所述的电动外科器械,其特征在于,所述运动转换件包括连杆和滑块,所述连杆的一端能够转动地连接于所述钳口驱动件,所述连杆的另一端能够转动地连接于所述滑块,所述滑块固定连接于所述套管。The electric surgical instrument according to claim 1 or 3, characterized in that, the motion conversion member includes a connecting rod and a slider, one end of the connecting rod is rotatably connected to the jaw driving member, and the connecting rod The other end of the rod is rotatably connected to the slider, and the slider is fixedly connected to the sleeve.
  12. 根据权利要求2或3所述的电动外科器械,其特征在于,所述阻挡部位于所述套管的轴线的一侧;所述阻挡部固定安装于所述电动外科器械的壳体,或者一体地形成于所述电动外科器械的壳体。The electric surgical instrument according to claim 2 or 3, wherein the blocking part is located on one side of the axis of the sleeve; the blocking part is fixedly installed on the housing of the electric surgical instrument, or is integrated Formed on the housing of the electric surgical instrument.
  13. 根据权利要求1或3所述的电动外科器械,其特征在于,所述钳口驱动件和所述运动转换件处于所述曲柄滑块机构的死点位置时,所述钳口组件处于闭合状态。The electric surgical instrument according to claim 1 or 3, wherein the jaw assembly is in a closed state when the jaw drive member and the motion conversion member are at the dead point of the slider crank mechanism .
  14. 根据权利要求1或3所述的电动外科器械,其特征在于,所述电动外科器械还 包括切割刀组件和与所述切割刀组件连接的芯轴组件;所述传动机构还包括切割驱动机构,所述切割驱动机构驱动所述芯轴组件运动,从而驱动所述切割刀组件前进或后退;所述切割驱动机构包括切割驱动件,在所述第一状态时,所述切割驱动件与所述芯轴组件分离;在所述第二状态时,所述切割驱动件与所述芯轴组件接合以驱动所述芯轴组件运动,从而驱动所述切割刀组件前进或后退。The electric surgical instrument according to claim 1 or 3, characterized in that, the electric surgical instrument also includes a cutter assembly and a mandrel assembly connected to the cutter assembly; the transmission mechanism also includes a cutting drive mechanism, The cutting driving mechanism drives the mandrel assembly to move, thereby driving the cutting knife assembly to advance or retreat; the cutting driving mechanism includes a cutting driving member, and in the first state, the cutting driving member is connected to the The mandrel assembly is separated; in the second state, the cutting driving member engages with the mandrel assembly to drive the mandrel assembly to move, thereby driving the cutting knife assembly to move forward or backward.
  15. 根据权利要求14所述的电动外科器械,其特征在于,在所述第一状态时,所述切割驱动件的远端与所述芯轴组件的近端间隔设置;在所述第二状态时,所述切割驱动件的远端与所述芯轴组件的近端配接以驱动所述芯轴组件沿第一方向运动,从而驱动所述切割刀组件前进。The electric surgical instrument according to claim 14, wherein in the first state, the distal end of the cutting drive is spaced from the proximal end of the mandrel assembly; in the second state , the distal end of the cutting drive member is engaged with the proximal end of the mandrel assembly to drive the mandrel assembly to move in a first direction, thereby driving the cutting knife assembly to advance.
  16. 根据权利要求15所述的电动外科器械,其特征在于,所述切割驱动机构还包括转换组件,在所述第二状态时,所述转换组件在所述切割驱动件的作用下,驱动所述芯轴组件沿第二方向运动以驱动所述切割刀组件后退,所述第二方向与所述第一方向相反。The electrical surgical instrument according to claim 15, wherein the cutting drive mechanism further comprises a conversion assembly, and in the second state, the conversion assembly drives the The mandrel assembly moves in a second direction opposite to the first direction to drive the cutter assembly backward.
  17. 根据权利要求16所述的电动外科器械,其特征在于,所述转换组件包括运动件和运动引导件,所述运动件与所述芯轴组件连接;在所述切割驱动件的作用下,所述运动件受所述运动引导件的引导运动至与所述切割驱动件接合,从而驱动所述芯轴组件沿所述第二方向运动。The electrical surgical instrument according to claim 16, wherein the conversion assembly includes a moving part and a moving guide, the moving part is connected with the mandrel assembly; under the action of the cutting drive part, the The moving part is guided by the moving guide part to move to engage with the cutting driving part, thereby driving the mandrel assembly to move along the second direction.
  18. 根据权利要求17所述的电动外科器械,其特征在于,所述运动件包括与所述芯轴组件枢转连接的枢转端,和自所述枢转端向外延伸的第一端和第二端;在所述切割驱动件驱动所述芯轴组件沿所述第一方向运动时,所述第一端受所述运动引导件的作用运动至与所述切割驱动件接合;在所述切割驱动件驱动所述运动件进而驱动所述芯轴组件沿所述第二方向运动时,所述第二端受所述运动引导件的作用运动以使所述第一端与所述切割驱动件分离。The electric surgical instrument according to claim 17, wherein the moving member includes a pivot end pivotally connected to the mandrel assembly, and a first end and a second end extending outward from the pivot end. two ends; when the cutting driving member drives the mandrel assembly to move along the first direction, the first end moves to engage with the cutting driving member under the action of the motion guide; When the cutting driving part drives the moving part and then drives the mandrel assembly to move along the second direction, the second end is moved by the action of the moving guide so that the first end and the cutting drive The pieces are separated.
  19. 根据权利要求18所述的电动外科器械,其特征在于,所述芯轴组件包括芯轴和与所述芯轴的近端连接的连接件,所述枢转端枢转地连接于所述连接件;所述第一端设置有嵌入部,所述切割驱动件的远端设置有接合槽,所述嵌入部嵌入所述接合槽以使所述运动件和所述切割驱动件接合。The powered surgical instrument of claim 18, wherein said mandrel assembly includes a mandrel and a link connected to a proximal end of said mandrel, said pivot end pivotally connected to said link The first end is provided with an embedding part, and the distal end of the cutting driving part is provided with an engaging groove, and the embedding part is embedded in the engaging groove to engage the moving part with the cutting driving part.
  20. 根据权利要求18所述的电动外科器械,其特征在于,所述运动引导件包括凹陷部以及位于所述凹陷部两侧的引导面,所述引导面包括第一引导面和第二引导面;所述第一端通过与所述第一引导面滑动地接触而绕所述枢转端运动至与所述切割驱动件接合,所述第二端通过与所述第二引导面滑动地接触而绕所述枢转端运动以使所述第一端与所 述切割驱动件分离。The electric surgical instrument according to claim 18, wherein the movement guide includes a recess and guide surfaces located on both sides of the recess, and the guide surfaces include a first guide surface and a second guide surface; The first end is moved about the pivot end into engagement with the cutting drive by sliding contact with the first guide surface and the second end is moved by sliding contact with the second guide surface. Movement about the pivot end disengages the first end from the cutting drive.
  21. 根据权利要求16所述的电动外科器械,其特征在于,所述转换组件包括运动件和运动引导件,所述运动件与所述切割驱动件连接;在所述切割驱动件的作用下,所述运动件受所述运动引导件的引导运动至与所述芯轴组件接合,从而驱动所述芯轴组件沿所述第二方向运动。The electrical surgical instrument according to claim 16, wherein the conversion assembly includes a moving part and a moving guide part, the moving part is connected with the cutting driving part; under the action of the cutting driving part, the The moving part is guided by the moving guide and moves to engage with the mandrel assembly, thereby driving the mandrel assembly to move along the second direction.
  22. 根据权利要求21所述的电动外科器械,其特征在于,所述运动件包括与所述切割驱动件枢转连接的枢转端,和自所述枢转端向外延伸的第一端和第二端;在所述切割驱动件沿所述第一方向运动时,所述第一端受所述运动引导件的作用运动至与所述芯轴组件接合;在所述切割驱动件驱动所述运动件进而驱动所述芯轴组件沿所述第二方向运动时,所述第二端受所述运动引导件的作用运动以使所述第一端与所述芯轴组件分离。The electric surgical instrument according to claim 21, wherein the moving member includes a pivot end pivotally connected to the cutting drive member, and a first end and a second end extending outward from the pivot end. Two ends; when the cutting driving member moves along the first direction, the first end moves to engage with the mandrel assembly under the action of the motion guide; when the cutting driving member drives the When the moving member further drives the mandrel assembly to move along the second direction, the second end moves under the action of the movement guide to separate the first end from the mandrel assembly.
PCT/CN2022/119096 2021-09-30 2022-09-15 Electric surgical instrument WO2023051269A1 (en)

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CN202122395094.5U CN216060620U (en) 2021-09-30 2021-09-30 Motorized surgical instrument
CN202111162105.3A CN115886911A (en) 2021-09-30 2021-09-30 Motorized surgical instrument
CN202122395094.5 2021-09-30
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