CN215606077U - Tissue forceps for treating wound by single person - Google Patents

Tissue forceps for treating wound by single person Download PDF

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Publication number
CN215606077U
CN215606077U CN202120927055.2U CN202120927055U CN215606077U CN 215606077 U CN215606077 U CN 215606077U CN 202120927055 U CN202120927055 U CN 202120927055U CN 215606077 U CN215606077 U CN 215606077U
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CN
China
Prior art keywords
transverse
longitudinal
tissue forceps
wound
single person
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Legal status (The legal status 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 status listed.)
Expired - Fee Related
Application number
CN202120927055.2U
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Chinese (zh)
Inventor
詹桉
李洪超
梁高峰
郭艺博
杜航航
赵子峥
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Henan University of Science and Technology
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Henan University of Science and Technology
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Priority to CN202120927055.2U priority Critical patent/CN215606077U/en
Application granted granted Critical
Publication of CN215606077U publication Critical patent/CN215606077U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A tissue forceps for treating wound by single person is composed of base, shaping tube assembly, tissue forceps, and a handle. The base is including the basic frame that is equipped with horizontal slide rail, the sideslip subassembly that is equipped with longitudinal slide rail, the indulge subassembly that moves that is equipped with the hose base, and sideslip subassembly slidable mounting just can follow the sideslip slide rail direction and slide on the sideslip slide rail, indulges and moves subassembly slidable mounting just can follow the longitudinal slide rail direction and slide on the longitudinal slide rail. The shaping hose assembly comprises a shaping hose, one end of the shaping hose assembly is detachably and fixedly connected with the hose base, and the other end of the shaping hose assembly is provided with a clamping mechanism. The clamping mechanism is detachably and fixedly connected with the tissue forceps. The utility model can realize opening the wound by using the tissue forceps and keep the state, so that medical staff can clean the inside of the wound conveniently, and the problem that the injury of small medical institutions cannot be treated in time due to insufficient hands is solved.

Description

Tissue forceps for treating wound by single person
Technical Field
The utility model relates to the field of medical instruments, in particular to a tissue forceps which can be used for treating wounds by a single person.
Background
When medical staff treat wounds, the deep wounds need to be cleaned sometimes. When clearing up the wound depths, need to use tissue forceps to open the wound and keep, just can normally clear up the work, this often needs the cooperation of more than two medical staff to accomplish.
In smaller scale medical settings, the number of medical personnel is relatively limited. When the wound of the wounded needs to be treated in special situations, a single person cannot complete the work.
Disclosure of Invention
The utility model aims to provide tissue forceps for treating wounds by a single person, which can flexibly adjust the position, open the wounds and keep the relative position under the condition that the wounds need to be treated by the single person, so that medical personnel can conveniently clean the exposed inside of the wounds.
The technical scheme of the utility model is as follows: a tissue forceps that can be used for a single person to treat a wound includes a base, a sizing hose assembly, and a tissue forceps. The base comprises a base frame provided with a transverse slide rail, a transverse moving assembly provided with a longitudinal slide rail and a longitudinal moving assembly provided with a hose base, wherein the transverse moving assembly is slidably mounted on the transverse slide rail and can slide along the direction of the transverse slide rail, and the longitudinal moving assembly is slidably mounted on the longitudinal slide rail and can slide along the direction of the longitudinal slide rail. The design hose assembly comprises a design hose, one end of the design hose is detachably and fixedly connected with the hose base, and the other end of the design hose is provided with a clamping mechanism. The tissue forceps and the clamping mechanism are detachably and fixedly connected.
And 1 or more transverse moving assemblies are arranged on the transverse sliding rails, and 1 or more longitudinal moving assemblies are arranged on each longitudinal sliding rail.
Furthermore, 2 transverse moving assemblies are arranged on the transverse sliding rails, and 1 longitudinal moving assembly is arranged on each longitudinal sliding rail.
The two transverse sliding rails are arranged at two ends of the basic frame in parallel. The middle part of the transverse moving component is provided with the longitudinal slide rail, the two ends of the transverse moving component are provided with transverse slide grooves matched with the transverse slide rails, and the transverse moving component is arranged on the transverse slide rails through the transverse slide grooves; longitudinal sliding grooves matched with the longitudinal sliding rails are formed in two sides of the longitudinal moving assembly, and the longitudinal moving assembly is installed on the longitudinal sliding rails through the longitudinal sliding grooves.
The part of the transverse moving assembly, which is in contact with the transverse sliding rail, is provided with a threaded hole, a first butterfly locking screw is arranged in the threaded hole, and the transverse moving assembly is tightly pressed against the transverse sliding rail by screwing the first butterfly locking screw to realize the relative fixation of the positions; the part of the longitudinal moving assembly, which is in contact with the longitudinal sliding rail, is provided with a threaded hole, a second butterfly-shaped locking screw is installed in the threaded hole, and the longitudinal moving assembly is screwed to tightly push the longitudinal sliding rail to realize relative fixation of the position.
Furthermore, limiting blocks are arranged at two ends of the transverse sliding rail to prevent the transverse moving assembly from falling off due to over-position.
The shaping hose assembly is characterized in that a plurality of shaping hoses with different diameters are mutually nested to form a multi-stage telescopic structure, and two adjacent shaping hoses are locked through a locking mechanism.
Further, the sizing hose assembly is of a secondary structure.
The center of the rotating shaft of the tissue forceps is provided with a shaft hole.
The clamping mechanism comprises an elbow, a connecting shaft and a butterfly nut, one end of the elbow is fixedly connected with the shaping hose assembly, the other end of the elbow is provided with the connecting shaft, the connecting shaft is perpendicular to the end face of the elbow, the surface of the connecting shaft is provided with threads, and the connecting shaft penetrates through the shaft hole and then is in threaded connection with the butterfly nut.
After the technical scheme is adopted, the utility model has the following beneficial effects:
1. the utility model creatively provides a scheme for clamping the tissue forceps by using the shaping hose, and the tissue forceps can be automatically kept after medical personnel adjust the position of the tissue forceps by using the great freedom degree and the characteristic of shape maintenance of the shaping hose, so that the defect that a single person cannot open a wound and maintain and clean the wound is overcome, and the work of the type of the tissue forceps can be completed by the single person;
2. the base adopts a mode of combining a plurality of transverse moving assemblies and longitudinal moving assemblies, so that the range of position adjustment is increased under the condition that a plurality of tissue clamps are required to be used, the cooperative cooperation among the plurality of tissue clamps is facilitated, and the practicability is higher;
3. the device has simple integral structure and convenient operation.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
FIG. 2 is a schematic view of the construction of the traversing assembly and the traversing assembly.
Fig. 3 is an enlarged schematic view at a in fig. 1.
Fig. 4 is a schematic structural view of a tissue forceps.
The labels in the figure are: 1. the device comprises a basic frame, 2, transverse sliding rails, 201, limiting blocks, 3, transverse moving assemblies, 301, longitudinal sliding rails, 302, transverse sliding grooves, 303, first butterfly-shaped locking screws, 4, longitudinal moving assemblies, 401, longitudinal sliding grooves, 402, hose bases, 403, second butterfly-shaped locking screws, 5, shaping hose assemblies, 501, locking mechanisms, 6, clamping mechanisms, 601, elbows, 602, connecting shafts, 603, butterfly nuts, 7, tissue clamps, 701, rotating shafts, 702 and shaft holes.
Detailed Description
The utility model is described in further detail below with reference to the figures and the embodiments.
Referring to fig. 1 to 4, the present invention provides a technical solution: a tissue forceps that can be used by a single person to treat a wound includes a base, a sizing hose assembly 5, and a tissue forceps 7.
The base comprises a basic frame 1 provided with transverse sliding rails 2, a transverse moving assembly 3 provided with longitudinal sliding rails 301 and a longitudinal moving assembly 4 provided with a hose base 402.
The number of the transverse sliding rails 2 is two, and the transverse sliding rails are arranged at two ends of the basic frame 1 in parallel. The middle part of the transverse moving component 3 is provided with the longitudinal slide rail 301, the two ends of the transverse moving component 3 are provided with transverse slide grooves 302 matched with the transverse slide rails 2, and the transverse moving component 3 is slidably arranged on the transverse slide rails 2 through the transverse slide grooves 302. Limiting blocks 201 are arranged at two ends of the transverse sliding rail 2 to prevent the transverse moving assembly 3 from falling off in an over-position mode. Longitudinal sliding grooves 401 matched with the longitudinal sliding rails 301 are formed in two sides of the longitudinal moving assembly 4, and the longitudinal moving assembly 4 is slidably mounted on the longitudinal sliding rails 301 through the longitudinal sliding grooves 401.
A threaded hole is formed in the part, in contact with the transverse sliding rail 2, of the traverse moving assembly 3, a first butterfly-shaped locking screw 303 is installed in the threaded hole, and the traverse moving assembly 3 is tightly pressed against the transverse sliding rail 2 through screwing the first butterfly-shaped locking screw 303 to realize relative fixation of the positions; the part of the longitudinal moving assembly 4, which is in contact with the longitudinal slide rail 301, is provided with a threaded hole, a second butterfly-shaped locking screw 403 is installed in the threaded hole, and the longitudinal moving assembly 4 is screwed to tightly push the longitudinal slide rail 301 to realize relative fixation of the positions.
Generally, 1 or more traverse motion assemblies 3 are arranged on the transverse slide rails 2, and 1 or more longitudinal motion assemblies 4 are arranged on each longitudinal slide rail 301. Preferably, 2 traverse moving assemblies 3 are arranged on the transverse slide rail 2, and 1 longitudinal moving assembly 4 is arranged on each longitudinal slide rail 301.
The shaping hose assembly 5 comprises a shaping hose, one end of the shaping hose is fixedly connected with the hose base 402 in a detachable mode, and the other end of the shaping hose is provided with a clamping mechanism 6.
Generally, the modular hose assembly 5 is formed by nesting a plurality of modular hoses with different diameters to form a multi-stage telescopic structure, and two adjacent modular hoses are locked by the locking mechanism 501. Preferably, the styling hose assembly 5 is a secondary structure.
The center of the rotating shaft 701 of the tissue forceps 7 is provided with a shaft hole 702. The clamping mechanism 6 comprises an elbow 601, a connecting shaft 602 and a butterfly nut 603, one end of the elbow 601 is fixedly connected with the shaping hose assembly 5, the other end of the elbow 601 is provided with the connecting shaft 602, the connecting shaft 602 is perpendicular to the end face of the elbow 601, the surface of the connecting shaft 602 is provided with threads, and the connecting shaft 602 penetrates through the shaft hole 702 and then is in threaded connection with the butterfly nut 603.
One specific application of the utility model is: fixing the basic frame 1 on a stable plane of a working point, loosening the first butterfly locking screw 303 and the second butterfly locking screw 403, adjusting the transverse moving component 3 and the longitudinal moving component 4 to proper positions, then screwing the first butterfly locking screw 303 and the second butterfly locking screw 403, and fixing the positions of the transverse moving component 3 and the longitudinal moving component 4.
And loosening the locking mechanism 501, pulling out the inner one-stage shaping hose by a proper length meeting the requirement, and fixing the relative positions of the inner and outer two-stage shaping hoses by using the locking mechanism 501.
Wing nut 603 is loosened so that tissue forceps 7 can freely rotate about connecting shaft 602.
The shape of the shaping hose assembly 5 is changed, so that the tissue forceps 7 reach a position where a wound needs to be kept open, the butterfly nut 603 is locked, the tissue forceps 7 are kept at the current position by using the shaping hose assembly 5, and medical staff can free hands to pay attention to cleaning the inside of the wound. During the cleaning process, if the position of the tissue forceps 7 needs to be finely adjusted, the shape of the shaping hose assembly 5 can be changed quickly.

Claims (10)

1. A tissue forceps for treating wound by single person is characterized in that: comprises a base, a shaping hose component (5) and tissue forceps (7);
the base comprises a basic frame (1) provided with a transverse slide rail (2), a transverse moving assembly (3) provided with a longitudinal slide rail (301) and a longitudinal moving assembly (4) provided with a hose base (402), wherein the transverse moving assembly (3) is slidably mounted on the transverse slide rail (2) and can slide along the direction of the transverse slide rail (2), and the longitudinal moving assembly (4) is slidably mounted on the longitudinal slide rail (301) and can slide along the direction of the longitudinal slide rail (301);
the shaping hose assembly (5) comprises a shaping hose, one end of the shaping hose is detachably and fixedly connected with the hose base (402), and the other end of the shaping hose is provided with a clamping mechanism (6);
the tissue forceps (7) is detachably and fixedly connected with the clamping mechanism (6).
2. A tissue forceps usable by a single person to treat a wound as claimed in claim 1, wherein: and 1 or more transverse moving assemblies (3) are arranged on the transverse sliding rail (2), and 1 or more longitudinal moving assemblies (4) are arranged on each longitudinal sliding rail (301).
3. A tissue forceps usable by a single person to treat a wound as claimed in claim 2, wherein: the transverse sliding rail (2) is provided with 2 transverse moving assemblies (3), and each longitudinal sliding rail (301) is provided with 1 longitudinal moving assembly (4).
4. A tissue forceps usable by a single person to treat a wound as claimed in claim 3, wherein: two transverse sliding rails (2) are arranged at two ends of the basic frame (1) in parallel; the middle part of the transverse moving component (3) is provided with the longitudinal slide rail (301), two ends of the transverse moving component (3) are provided with transverse slide grooves (302) matched with the transverse slide rails (2), and the transverse moving component (3) is arranged on the transverse slide rails (2) through the transverse slide grooves (302); longitudinal sliding grooves (401) matched with the longitudinal sliding rails (301) are formed in two sides of the longitudinal moving assembly (4), and the longitudinal moving assembly (4) is installed on the longitudinal sliding rails (301) through the longitudinal sliding grooves (401).
5. A tissue forceps usable by a single person to treat a wound as claimed in claim 4, wherein: a threaded hole is formed in the part, in contact with the transverse sliding rail (2), of the transverse moving assembly (3), a first butterfly-shaped locking screw (303) is installed in the threaded hole, and the transverse moving assembly (3) is tightly pushed against the transverse sliding rail (2) to realize relative fixation of the positions by screwing the first butterfly-shaped locking screw (303); the part of the longitudinal moving assembly (4) contacting with the longitudinal sliding rail (301) is provided with a threaded hole, a second butterfly locking screw (403) is installed in the threaded hole, and the longitudinal moving assembly (4) is tightly pressed against the longitudinal sliding rail (301) through screwing the second butterfly locking screw (403) to realize relative fixation of the positions.
6. A tissue forceps usable by a single person to treat a wound as claimed in claim 4, wherein: and limiting blocks (201) are arranged at two ends of the transverse sliding rail (2) to prevent the transverse moving assembly (3) from falling off at an over position.
7. A tissue forceps usable by a single person to treat a wound as claimed in claim 1, wherein: the shaping hose assembly (5) is formed by mutually nesting a plurality of shaping hoses with different diameters to form a multi-stage telescopic structure; two adjacent shaping hoses are locked by a locking mechanism (501).
8. A tissue forceps usable by a single person to treat a wound as claimed in claim 7, wherein: the shaping hose component (5) is of a secondary structure.
9. A tissue forceps usable by a single person to treat a wound as claimed in claim 1, wherein: the center of the rotating shaft (701) of the tissue forceps (7) is provided with a shaft hole (702).
10. A tissue forceps usable by a single person to treat a wound as claimed in claim 9, wherein: the clamping mechanism (6) comprises an elbow (601), a connecting shaft (602) and a butterfly nut (603), one end of the elbow (601) is fixedly connected with the sizing hose assembly (5), the other end of the elbow (601) is provided with the connecting shaft (602), the connecting shaft (602) is perpendicular to the end face of the elbow (601), the surface of the connecting shaft is provided with threads, and the connecting shaft (602) penetrates through the shaft hole (702) and then is in threaded connection with the butterfly nut (603).
CN202120927055.2U 2021-04-30 2021-04-30 Tissue forceps for treating wound by single person Expired - Fee Related CN215606077U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120927055.2U CN215606077U (en) 2021-04-30 2021-04-30 Tissue forceps for treating wound by single person

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120927055.2U CN215606077U (en) 2021-04-30 2021-04-30 Tissue forceps for treating wound by single person

Publications (1)

Publication Number Publication Date
CN215606077U true CN215606077U (en) 2022-01-25

Family

ID=79937243

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120927055.2U Expired - Fee Related CN215606077U (en) 2021-04-30 2021-04-30 Tissue forceps for treating wound by single person

Country Status (1)

Country Link
CN (1) CN215606077U (en)

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Granted publication date: 20220125