CN223095767U - Endoscopic operating table - Google Patents

Endoscopic operating table

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Publication number
CN223095767U
CN223095767U CN202422197419.2U CN202422197419U CN223095767U CN 223095767 U CN223095767 U CN 223095767U CN 202422197419 U CN202422197419 U CN 202422197419U CN 223095767 U CN223095767 U CN 223095767U
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CN
China
Prior art keywords
lifting
seat
plate
chassis
main body
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Active
Application number
CN202422197419.2U
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Chinese (zh)
Inventor
赵传营
冯洪营
杨凤娇
刘豪
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Shinva Medical Instrument Co Ltd
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Shinva Medical Instrument Co Ltd
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Priority to CN202422197419.2U priority Critical patent/CN223095767U/en
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Publication of CN223095767U publication Critical patent/CN223095767U/en
Active legal-status Critical Current
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Abstract

The utility model discloses an endoscope operating table, which relates to the technical field of medical equipment and comprises a lathe bed component, a chassis component, a lifting component and a base plate, wherein the lathe bed component comprises a leg plate, a seat plate and a back plate which are sequentially and rotatably connected, a first angle adjusting mechanism is arranged at an included angle between the seat plate and the leg plate and/or between the seat plate and the back plate, the chassis component comprises a chassis main body and wheels used for supporting the chassis main body, the lifting component is arranged between the chassis component and the lathe bed component and used for lifting the lathe bed component, the bottom end of the lifting component is fixedly connected with the chassis component, the top end of the lifting component is rotatably connected with the seat plate, the endoscope operating table is redesigned to enable the lathe bed component to obtain functions of sitting posture conversion, back lifting and leg lifting, and the lifting component is added to enable a transfer trolley to obtain lifting functions, so that the use requirements of waiting area waiting, treatment of a doctor room and middle transfer under three scenes are met.

Description

Endoscope operating table
Technical Field
The utility model relates to the technical field of medical instruments, in particular to an endoscopic operating table.
Background
The soft endoscope can conveniently, directly and effectively observe, diagnose and treat pathological tissues in the human body through the natural cavity of the human body, and has the advantages of high image definition, low pain of patients and the like. There are many kinds of surgical items for diagnosis and treatment using a soft endoscope, there are many kinds of diagnosis and treatment using a gastroscope, there are many kinds of diagnosis and treatment works such as an ERCP operation using a duodenoscope, which is complicated in work and needs to work together with X-rays, and a surgery in which a soft endoscope and a hard endoscope are used in combination for diagnosis and treatment.
The ERCP operation and other complex operations need to use gunpowder for patients in the operation process, the common gastroscope and enteroscope can determine whether to adopt an anesthetic diagnosis and treatment mode by the patients, along with the popularization of soft endoscope diagnosis and treatment and the improvement of the diagnosis and treatment experience requirements of the patients, more and more patients select anesthetic diagnosis and treatment with higher comfortableness, the diagnosis and treatment mode generally needs to finish the imbedding work of an indwelling needle by the patients in a sitting posture in a waiting area, anesthesia is carried out in the waiting area or the patients are transferred to a diagnosis room for anesthesia, a worker is protected to transfer the patients from the waiting area to the diagnosis and treatment area for diagnosis and treatment in a sitting posture or a sitting posture, the patients need to be checked by adopting the prone posture during diagnosis and treatment bed height and other postures are adjusted by doctors according to the on-site conditions, and after the diagnosis and treatment is finished, the worker is transferred from the diagnosis and treatment area to a resuscitatory area by the worker. This requires a specialized operating table for the whole endoscopic procedure to meet the basic medical needs and comfort and convenience requirements.
At present, an endoscope operation table which is not designed aiming at the endoscope diagnosis and treatment working characteristics is generally adopted as the endoscope operation table by a medical transfer trolley.
Taking the patient treatment process of anesthesia diagnosis and treatment as an example, in order to facilitate the medical staff to inquire and insert the physical condition of the patient, the patient usually finishes the pre-embedding treatment of the indwelling needle in a sitting posture in a waiting area, then the patient waits for a diagnosis and treatment room to send a diagnosis and treatment notice, and after the diagnosis and treatment notice is sent by the diagnosis and treatment room, both the awake patient and the patient who has completed anesthesia need to enter the diagnosis room with medical accessories such as infusion and the like, and the position of the patient is not accurately known.
Typically, this process is not accomplished by the patient walking by himself. The process requires a transfer tool to transfer patients to a corresponding diagnosis and treatment room, a manual medical transfer vehicle (hereinafter referred to as a transfer vehicle) is used as an endoscope diagnosis and treatment bed at present, and the transfer vehicle can realize basic transfer and patient bearing functions at present, but the product does not have functions of sitting and lying posture conversion structure, lifting, back lifting, leg lifting and the like, and when the patients lie on the transfer vehicle, the quality of the transfer vehicle is large, the direction of the transfer vehicle is difficult to push and the operation execution of the lifting and the lowering of the height of the diagnosis and treatment bed is difficult to change, such as braking and the like. No matter which stage the patient is in diagnosis and treatment, the patient has different use requirements on the height and the posture of diagnosis and treatment equipment, and the existing tools such as a transfer trolley and the like can not well meet the requirements of endoscope diagnosis and treatment.
If this process does not have universal transfer, carrying tools, three types of personal medical devices are required in the waiting area, transfer process, and clinic, and the patient is required to change the carrying tools whenever transfer is required. The scheme brings great difficulty to hospitals in terms of use space, storage space, line management and personnel management, and particularly the difficulty of replacing the manned tool when the patient is in an anesthesia state after diagnosis and treatment is finished.
In summary, how to provide an endoscope operating table capable of solving the problem that the existing transfer trolley can not meet the requirements of multiple tools for waiting in a waiting area, treatment in a consulting room and intermediate transfer of patients, and the existing transfer trolley has no functions of sitting and lying posture conversion, lifting, back lifting, leg lifting and the like is a problem to be solved by those skilled in the art.
Disclosure of utility model
Therefore, the utility model aims to provide an endoscopic operating table, which is characterized in that a bed body component is redesigned to obtain the functions of sitting and sleeping posture conversion, back lifting and leg lifting, and a lifting component is added to enable a transfer trolley to obtain the lifting function, so that the operating requirements of three scenes of waiting in a waiting area, treatment in a consulting room and middle transfer are met.
In order to achieve the above object, the present utility model provides the following technical solutions:
an endoscopic surgical table comprising:
The lathe bed assembly comprises a leg plate, a seat plate and a back plate which are sequentially and rotatably connected, and a first angle adjusting mechanism is arranged at the included angle between the seat plate and the leg plate and/or the back plate;
a chassis assembly including a chassis body and wheels for supporting the chassis body;
The lifting assembly is arranged between the chassis assembly and the lathe bed assembly and used for lifting the lathe bed assembly to lift, the bottom end of the lifting assembly is fixedly connected with the chassis assembly, the top end of the lifting assembly is rotationally connected with the seat plate, and a second angle adjusting mechanism is arranged at the position of an included angle between the top end of the lifting assembly and the seat plate.
Preferably, a backboard connecting rod seat is arranged on the lower surface of the backboard, a leg backboard linkage rod is arranged between the lower surface of the leg board and the backboard connecting rod seat, and two ends of the leg backboard linkage rod are connected in a hinged mode;
The first angle adjusting mechanism is a first electric telescopic rod, and two ends of the first electric telescopic rod are respectively hinged with the lower surface of the seat plate and the back plate connecting rod seat.
Preferably, a handle is arranged at the end part of the lower surface of the back plate, a manual release rod is arranged in the handle, and a control switch of the first electric telescopic rod is integrated in the manual release rod.
Preferably, the upper surface of the leg plate is fixedly provided with a leg plate pad, the back plate and the surface of the seat plate are jointly provided with a bed-back integrated pad, the back plate and/or the upper surface of the seat plate is provided with a safety belt for binding, and both sides of the back plate and/or the seat plate are provided with guardrails.
Preferably, the lifting assembly comprises a four-bar mechanism formed by hinging the chassis main body, the first connecting rod, the lifting seat and the second connecting rod in sequence;
A third angle adjusting mechanism is arranged at the included angle between the first connecting rod and the chassis main body, the lifting seat is rotationally connected with the seat plate, and the second angle adjusting mechanism is arranged at the included angle between the lifting seat and the seat plate;
The chassis main body is of a frame structure, and the lifting assembly can be accommodated in the frame of the chassis main body.
Preferably, one end of the chassis main body is fixedly provided with an inclined upright post, and the end parts of the first connecting rod and the second connecting rod are respectively hinged with the upper end and the middle end of the inclined upright post;
The third angle adjusting mechanism is a second electric telescopic rod, and the second electric telescopic rod is hinged with one end, close to the lifting seat, of the first connecting rod and the lower end of the inclined upright post respectively.
Preferably, an axis A, an axis B and an axis C are fixedly arranged in the lifting seat, the axes of the axis A, the axis B and the axis C are parallel and are not coplanar, and the end parts of the first connecting rod and the second connecting rod are hinged with the axis A and the axis B respectively;
the shaft C is rotatably installed with the seat plate;
The second angle adjusting mechanism is a third electric telescopic rod, two ends of the third electric telescopic rod are hinged to the lower surface of the shaft A and the lower surface of the seat board respectively, and the hinge point of the third electric telescopic rod and the seat board is not collinear with the axis of the shaft C.
Preferably, a gas spring is arranged between the first connecting rod and the second connecting rod, and two ends of the gas spring are respectively hinged with one end of the first connecting rod, which is close to the lifting seat, and one end of the second connecting rod, which is close to the chassis main body, or two ends of the gas spring are respectively hinged with one end of the first connecting rod, which is close to the chassis main body, and one end of the second connecting rod, which is close to the lifting seat.
Preferably, a brake pedal and a control pedal are arranged on the side edge of the chassis main body;
The brake pedal is linked with a brake mechanism in the wheel, the brake pedal at the same end of the chassis main body is linked through a shaft lever, and the brake pedals at different ends of the chassis main body are linked through a brake linkage rod;
The control pedal is electrically connected with the first angle adjusting mechanism, the second angle adjusting mechanism and the control unit of the lifting assembly.
Preferably, the storage basket is fixedly arranged in the chassis main body, and the side edge of the chassis main body is provided with the infusion support fixing seat which can be rotated and folded along the vertical axis.
Compared with the prior art, the endoscopic operating table provided by the utility model has at least the following beneficial effects:
1. Through redesigning the bed body assembly, the back plate, the seat plate and the leg plates are designed independently and can rotate mutually, so that the sitting and lying posture conversion is realized, and a first angle adjusting mechanism is additionally arranged between the seat plate and the back plate and/or the leg plates, so that the functions of lifting the back and the legs are realized;
2. A lifting component is added between the chassis component and the bed component, so that the whole bed component has lifting capacity, and a second angle adjusting mechanism is added between the lifting component and the seat board, so that the whole inclination of the bed component can be adjusted, and the requirement of the endoscopic surgery on the lying posture of a patient is met;
3. Wheels are integrated in the chassis assembly, so that the patient can be transported conveniently, and the use requirements of waiting areas under three conditions of waiting, treatment in a consulting room and intermediate transportation can be met simultaneously.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required to be used in the embodiments or the description of the prior art will be briefly described below, and it is obvious that the drawings in the following description are only embodiments of the present utility model, and that other drawings can be obtained according to the provided drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of a surgical table with an endoscope according to the present utility model;
FIG. 2 is a schematic view of an alternative angle of the endoscopic table according to the present utility model;
FIG. 3 is a schematic view of a specific bed assembly according to the present utility model;
FIG. 4 is a schematic view of a specific chassis assembly according to the present utility model;
fig. 5 is a schematic structural diagram of a specific lifting seat provided by the present utility model.
In fig. 1-5:
1. The device comprises a lathe bed component, a leg plate, a 102, a seat plate, a 103, a back plate, a 104, a leg back plate linkage rod, a 105, a first electric telescopic rod, a 106, a back plate linkage rod seat, a 107, a leg plate pad, a 108, a bed back integrated pad, 109, a safety belt, 110, a limiting bulge, 111, a handle, 112 and a manual release rod;
2. Lifting assembly, 201, first connecting rod, 202, second connecting rod, 203, lifting seat, 2031, axis A, 2032, axis B, 2033, axis C, 204, second electric telescopic rod, 205, oblique column, 206, third electric telescopic rod;
3. The device comprises a chassis assembly, a chassis main body, 302, wheels, 303, a control pedal, 304, an infusion support fixing seat, 305, a storage basket, 306, a brake pedal, 307, a shaft lever, 308 and a brake linkage rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The core of the utility model is to provide an endoscopic operating table, which is characterized in that a bed body component is redesigned to obtain the functions of sitting and sleeping posture conversion, back lifting and leg lifting, and a lifting component is added to enable a transfer trolley to obtain the lifting function, so that the operating requirements of three scenes of waiting in a waiting area, treatment in a consulting room and middle transfer are met.
Referring to fig. 1-5, an endoscopic surgical table, comprising:
The lathe bed component 1 comprises a leg plate 101, a seat plate 102 and a back plate 103 which are sequentially connected in a rotating way, wherein a first angle adjusting mechanism is arranged at the included angle between the seat plate 102 and the leg plate 101 and/or the back plate 103;
a chassis assembly 3 including a chassis main body 301 and wheels 302 for supporting the chassis main body 301;
the lifting assembly 2 is arranged between the chassis assembly 3 and the bed assembly 1 and is used for lifting the bed assembly 1 to lift, the bottom end of the lifting assembly 2 is fixedly connected with the chassis assembly 3, and the top end of the lifting assembly 2 is rotationally connected with the seat plate 102;
In the design process, the leg plate 101, the seat plate 102 and the back plate 103 are mutually independent by redesigning the bed body component 1, and the angle between the seat plate 102 and the back plate 103 as well as the leg plate 101 is adjustable;
When the back plate 103 is turned upwards and the leg plates 101 are turned downwards, the sitting posture requirement can be met, and the device is suitable for patients to use in waiting rooms;
When the back plate 103 is turned upwards, the leg plates 101 and the seat plate 102 are coplanar, the sitting and lying requirements can be met, the device is suitable for the operation of a patient in a consulting room, and the angle of the back plate 103 can be adjusted to achieve the optimal sitting and lying posture;
when the back plate 103, the leg plate 101 and the seat plate 102 are all coplanar, the requirement of lying can be met;
In design, in some embodiments, a motor is used as a first angle adjusting mechanism, wherein a stator end is fixed with a seat plate 102, a rotor end is connected with a back plate 103 or a leg plate 101, and the angle of the back plate 103 and the leg plate 101 is adjusted by the rotation of the motor;
meanwhile, wheels 302 are integrated in the chassis assembly 3, so that the patient can conveniently use the chassis assembly during transportation, and the chassis assembly is convenient to push;
in addition, a lifting component 2 is added between the chassis component 3 and the bed component 1, in some embodiments, the lifting component 2 is an electric telescopic rod which is vertically arranged, so that the height adjustment of the bed component 1 is conveniently and quickly realized, the operation requirement is met, and meanwhile, a second angle adjusting mechanism is also added, the overall inclination of the bed component 1 can be further adjusted, and the operation requirement on the prone position of a patient is further met;
As shown in fig. 2, the limiting protrusion 110 is fixedly arranged on the lower surface of the seat plate 102, when the included angle between the seat plate 102 and the lifting seat 203 reaches the set maximum value, the limiting protrusion 110 can be abutted against the lifting seat 203, and the limiting protrusion 110, the seat plate 102 and the lifting seat 203 form a triangle, so that the continuous increase of the angle between the seat plate 102 and the lifting seat 203 is avoided, and the functions of limiting and protecting are achieved.
In some embodiments, a backboard connecting rod seat 106 is arranged on the lower surface of the backboard 103, a leg backboard linkage rod 104 is arranged between the lower surface of the leg board 101 and the backboard connecting rod seat 106, and two ends of the leg backboard linkage rod 104 are connected in a hinged mode;
the first angle adjusting mechanism is a first electric telescopic rod 105, and two ends of the first electric telescopic rod 105 are respectively hinged with the lower surface of the seat plate 102 and the back plate connecting rod seat 106;
As shown in fig. 3, only a first angle adjusting mechanism is arranged between the back plate 103 and the seat plate 102 for adjusting the angle between the back plate 103 and the seat plate 102, and a leg back plate linkage rod 104 is used for connecting the back plate 103 and the leg plate 101, when the angle between the back plate 103 and the seat plate 102 changes, the angle between the leg plate 101 and the seat plate 102 changes simultaneously, specifically, the back plate 103 turns up, the leg plate 101 turns down to be in a sitting posture or the back plate 103 turns down to be reset, the leg plate 101 turns up to be in a lying posture, and then the actions of the back plate 103 and the leg plate 101 are synchronized through the use of the leg back plate linkage rod 104.
In some embodiments, a handle 111 is provided at an end of the lower surface of the back plate 103, a manual release lever 112 is provided in the handle 111, and a control switch of the first electric telescopic rod 105 is integrated in the manual release lever 112;
Through setting up handle 111 at the lower surface of backplate 103, make the scope operation panel be when sitting, the medical personnel of being convenient for promote, and be convenient for control the length of first electric telescopic handle 105 through manual release lever 112, and then adjust the angle of backplate 103 and leg board 101, change the gesture of scope operation panel promptly.
In some embodiments, the upper surface of the leg board 101 is fixedly provided with a leg board pad 107, the surfaces of the back board 103 and the seat board 102 are jointly provided with a bed back integrated pad 108, the upper surface of the back board 103 and/or the seat board 102 is provided with a safety belt 109 for binding, and two sides of the back board 103 and/or the seat board 102 are provided with guardrails;
As shown in fig. 1, by providing the separate leg plate pad 107 on the leg plate 101, on the premise of increasing the comfort level of the leg, the angle adjustment of the leg plate 101 is not affected, and meanwhile, because the back plate 103 is turned up when the angle adjustment is performed, the back plate 103 and the seat plate 102 are provided with the integrated bed back integrated pad 108, so that the comfort level is improved, and the turning up of the back plate 103 is not affected;
Meanwhile, guardrails are arranged on two sides of the back plate 103 and the seat plate 102, so that patients are prevented from falling off in the transferring process;
Meanwhile, the guardrail adopts a detachable or liftable design, and can be detached or lowered to a position which does not affect the operation of medical staff during treatment in a consulting room.
In some embodiments, the lifting assembly 2 comprises a four-bar mechanism consisting of a chassis main body 301, a first link 201, a lifting seat 203 and a second link 202 which are hinged in sequence;
A third angle adjusting mechanism is arranged at the included angle between the first connecting rod 201 and the chassis main body 301, the lifting seat 203 is rotationally connected with the seat plate 102, and the second angle adjusting mechanism is arranged at the included angle between the lifting seat 203 and the seat plate 102;
The chassis main body 301 has a frame structure, and the lifting assembly 2 can be accommodated in the frame of the chassis main body 301.
As shown in fig. 1-2, the height of the bed component 1 is adjusted by a four-bar mechanism, one group of connecting bars, such as a first connecting bar 201 or a second connecting bar 202, is driven to swing, so that the lifting seat 203 can be driven to lift or descend, the lifting track of the lifting seat 203 is in a curve shape, meanwhile, the length relation between the first connecting bar 201 and the second connecting bar 202 is limited, when the lifting seat 203 is lifted and lowered, the posture of the lifting seat 203 is changed, if the lengths of the first connecting bar 201 and the second connecting bar 202 are consistent, the posture of the lifting seat 203 is constant when the lifting seat is lifted and lowered, meanwhile, compared with the traditional lifting mechanism consisting of vertical telescopic bars, the lifting component 2 consisting of the four-bar mechanism can effectively change the position relation between the gravity center of the bed component 1 and the chassis component 3, so as to adapt to the problem that the gravity center position of the bed component 1 is changed after the posture adjustment, and the overall stability is maintained;
Meanwhile, a third angle adjusting mechanism is further arranged between the lifting seat 203 and the seat plate 102, so that the inclination angle of the seat plate 102 can be independently adjusted on the premise of not changing the posture of the lifting seat 203, and the overall inclination of the lathe bed assembly 1 is further changed;
Meanwhile, the chassis main body 301 with the frame structure is adopted, so that the lifting assembly 2 can be accommodated in the frame, the gravity center of the whole equipment in the folded state is further lowered, and the stability of the whole equipment is kept.
In some embodiments, one end of the chassis main body 301 is fixedly provided with an inclined upright 205, and the ends of the first link 201 and the second link 202 are respectively hinged with the upper end and the middle end of the inclined upright 205;
The third angle adjusting mechanism is a second electric telescopic rod 204, and the second electric telescopic rod 204 is respectively hinged with one end of the first connecting rod 201, which is close to the lifting seat 203, and the lower end of the inclined upright 205;
In some embodiments, the swing power source of the first link 201 is a motor, the stator end of the motor is fixedly connected with the chassis main body 301, the rotor end of the motor is connected with the first link 201, and the motor rotates to drive the first link 201 to swing so as to further drive the lifting assembly 2 to lift or lower, in the embodiment, as shown in fig. 2 and fig. 4, the length change of the second electric telescopic rod 204 is adopted to drive the first link 201 to swing, and compared with the motor, a larger force arm can be obtained, so that the output power is further reduced, the energy consumption is saved, and the requirement on the rigidity of materials is reduced.
In some embodiments, the lifting base 203 is fixedly provided with an axis a2031, an axis B2032 and an axis C2033, and axes of the axis a2031, the axis B2032 and the axis C2033 are parallel and not coplanar, and ends of the first connecting rod 201 and the second connecting rod 202 are hinged with the axis a2031 and the axis B2032 respectively;
shaft C2033 is rotatably mounted with seat plate 102;
The second angle adjusting mechanism is a third electric telescopic rod 206, two ends of the third electric telescopic rod 206 are respectively hinged with the shaft A2031 and the lower surface of the seat board 102, and the hinge point of the third electric telescopic rod 206 and the seat board 102 is not collinear with the axis of the shaft C2033;
As shown in fig. 5 and fig. 2, a triangular lifting seat 203 is adopted, three groups of parallel shafts are arranged in the lifting seat, the three groups of parallel shafts are fixed through a plurality of independent steel plates, the three groups of parallel shafts have relatively stable relative position relationship, and the three groups of shafts are respectively connected with corresponding positions in a rotating way and do not interfere with each other.
In some embodiments, a gas spring is disposed between the first link 201 and the second link 202, and two ends of the gas spring are respectively hinged to one end of the first link 201 near the lifting seat 203 and one end of the second link 202 near the chassis main body 301, or two ends of the gas spring are respectively hinged to one end of the first link 201 near the chassis main body 301 and one end of the second link 202 near the lifting seat 203;
By arranging the gas spring between the first connecting rod 201 and the second connecting rod 202, the gas spring has certain damping when swinging, and can have certain self-locking effect after reaching a preset position, namely, the self-locking can occur after the lathe bed assembly 1 reaches a set height, and the gas spring is stably kept at the height.
In some embodiments, the chassis body 301 is provided with a brake pedal 306 and a control pedal 303 on the sides;
The brake pedal 306 is linked with the brake mechanism in the wheel 302, the brake pedal 306 at the same end of the chassis main body 301 is linked through a shaft lever 307, and the brake pedals 306 at different ends of the chassis main body 301 are linked through a brake linkage rod 308;
the control pedal 303 is electrically connected with the first angle adjusting mechanism, the second angle adjusting mechanism and the control unit of the lifting assembly 2;
As shown in FIG. 1, by adding the brake pedal 306 which can be linked with each other at the bottom, the medical staff can brake the endoscope operation table timely and rapidly no matter which side of the inner diameter operation table, thereby avoiding uncontrolled in the transferring process;
Meanwhile, the control pedal 303 is arranged on the side edge of the chassis main body 301 to control the angle control mechanism, so that medical staff can conveniently adjust the posture of an operating table without taking hands out in operation, the operation can be finished by stepping on the operating table, the hands are prevented from being polluted, and the convenience of use is improved.
In some embodiments, a storage basket 305 is fixedly arranged in the chassis main body 301, and a transfusion stand fixing seat 304 which can be folded along a vertical axis in a rotating way is arranged on the side edge of the chassis main body 301;
when the design, can with battery, automatically controlled etc. power supply synchronization integration in chassis main part 301 to reduce whole focus, at the vacant position in chassis main part 301 simultaneously, set up storing basket 305, be convenient for the storing, set up folding infusion support fixing base 304 simultaneously in the side, be convenient for infusion support's fixed, adopt folding design simultaneously, accomodate when being convenient for not using, avoid interfering with other objects.
In the present specification, each embodiment is described in a progressive manner, and each embodiment is mainly described in a different point from other embodiments, and identical and similar parts between the embodiments are all enough to refer to each other.
The endoscopic surgery table provided by the utility model is described in detail above. The principles and embodiments of the present utility model have been described herein with reference to specific examples, the description of which is intended only to facilitate an understanding of the method of the present utility model and its core ideas. It should be noted that it will be apparent to those skilled in the art that various modifications and adaptations of the utility model can be made without departing from the principles of the utility model and these modifications and adaptations are intended to be within the scope of the utility model as defined in the following claims.

Claims (10)

1. An endoscopic surgery table, comprising:
The lathe bed assembly (1) comprises a leg plate (101), a seat plate (102) and a back plate (103) which are sequentially connected in a rotating way, wherein a first angle adjusting mechanism is arranged at an included angle between the seat plate (102) and the leg plate (101) and/or the back plate (103);
-a chassis assembly (3) comprising a chassis body (301) and wheels (302) for supporting the chassis body (301);
The lifting assembly (2) is arranged between the chassis assembly (3) and the lathe bed assembly (1) and is used for lifting the lathe bed assembly (1) to lift, the bottom end of the lifting assembly (2) is fixedly connected with the chassis assembly (3), the top end of the lifting assembly is rotatably connected with the seat plate (102), and a second angle adjusting mechanism is arranged at an included angle between the top end of the lifting assembly (2) and the seat plate (102).
2. An endoscopic surgery table according to claim 1, wherein a backboard connecting rod seat (106) is provided on the lower surface of the backboard (103), a leg backboard linkage rod (104) is provided between the lower surface of the leg board (101) and the backboard connecting rod seat (106), and both ends of the leg backboard linkage rod (104) are connected in a hinged manner;
The first angle adjusting mechanism is a first electric telescopic rod (105), and two ends of the first electric telescopic rod (105) are respectively hinged with the lower surface of the seat plate (102) and the backboard connecting rod seat (106).
3. Endoscopic surgery table according to claim 2, characterized in that the end of the lower surface of the back plate (103) is provided with a handle (111), a manual release lever (112) is provided in the handle (111), and a control switch of the first electric telescopic lever (105) is integrated in the manual release lever (112).
4. Endoscopic surgery table according to claim 2, characterized in that the upper surface of the leg plate (101) is fixedly provided with a leg plate pad (107), the back plate (103) and the seat plate (102) surface are jointly provided with a bed back integrated pad (108), the upper surface of the back plate (103) and/or the seat plate (102) is provided with a safety belt (109) for binding, and both sides of the back plate (103) and/or the seat plate (102) are provided with guardrails.
5. An endo-surgical table according to claim 1, characterized in that the lifting assembly (2) comprises a four-bar mechanism consisting of the chassis body (301), a first link (201), a lifting seat (203) and a second link (202) hinged in sequence;
A third angle adjusting mechanism is arranged at the included angle between the first connecting rod (201) and the chassis main body (301), the lifting seat (203) is rotationally connected with the seat board (102), and the second angle adjusting mechanism is arranged at the included angle between the lifting seat (203) and the seat board (102);
The chassis main body (301) is of a frame structure, and the lifting assembly (2) can be accommodated in the frame of the chassis main body (301).
6. An endoscopic surgery table according to claim 5, characterized in that one end of the chassis body (301) is fixedly provided with an oblique column (205), the ends of the first and second links (201, 202) being hinged to the upper and middle ends of the oblique column (205), respectively;
the third angle adjusting mechanism is a second electric telescopic rod (204), and the second electric telescopic rod (204) is hinged with one end, close to the lifting seat (203), of the first connecting rod (201) and the lower end of the inclined upright post (205) respectively.
7. The endoscopic surgery table according to claim 5, wherein an axis a (2031), an axis B (2032) and an axis C (2033) are fixedly arranged in the lifting base (203), the axes of the axis a (2031), the axis B (2032) and the axis C (2033) are parallel and not coplanar, and the ends of the first connecting rod (201) and the second connecting rod (202) are hinged to the axis a (2031) and the axis B (2032), respectively;
The shaft C (2033) is rotatably mounted with the seat plate (102);
The second angle adjusting mechanism is a third electric telescopic rod (206), two ends of the third electric telescopic rod (206) are respectively hinged with the shaft A (2031) and the lower surface of the seat board (102), and the hinge point of the third electric telescopic rod (206) and the seat board (102) is not collinear with the axis of the shaft C (2033).
8. An endoscopic surgery table according to claim 5, characterized in that a gas spring is arranged between the first link (201) and the second link (202), both ends of which are hinged with one end of the first link (201) close to the lifting seat (203) and one end of the second link (202) close to the chassis main body (301), respectively, or both ends of which are hinged with one end of the first link (201) close to the chassis main body (301) and one end of the second link (202) close to the lifting seat (203), respectively.
9. An endo-surgical table according to claim 1, characterized in that the chassis body (301) is provided on its side with a brake pedal (306) and a control pedal (303);
the brake pedal (306) is linked with a brake mechanism in the wheel (302), the brake pedal (306) at the same end of the chassis main body (301) is linked through a shaft lever (307), and the brake pedals (306) at different ends of the chassis main body (301) are linked through a brake linkage rod (308);
the control pedal (303) is electrically connected with the first angle adjusting mechanism, the second angle adjusting mechanism and the control unit of the lifting assembly (2).
10. An endoscopic surgery table according to any one of claims 1-9, wherein a storage basket (305) is fixedly arranged inside the chassis main body (301), and a transfusion stand fixing seat (304) which can be folded along a vertical axis in a rotating way is arranged at the side edge of the chassis main body (301).
CN202422197419.2U 2024-09-09 2024-09-09 Endoscopic operating table Active CN223095767U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422197419.2U CN223095767U (en) 2024-09-09 2024-09-09 Endoscopic operating table

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422197419.2U CN223095767U (en) 2024-09-09 2024-09-09 Endoscopic operating table

Publications (1)

Publication Number Publication Date
CN223095767U true CN223095767U (en) 2025-07-15

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422197419.2U Active CN223095767U (en) 2024-09-09 2024-09-09 Endoscopic operating table

Country Status (1)

Country Link
CN (1) CN223095767U (en)

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