Handheld minimally invasive electric coagulation forceps

By designing handheld minimally invasive electrocoagulation tweezers, using the combination of clamping structure and gun-type push keys, the problem of existing electrocoagulation tweezers being inconvenient for rapid pressing and resetting is solved, and the efficiency and convenience of bleeding during surgery are improved.

CN223081743UActive Publication Date: 2025-07-11MESSAIN (FOSHAN) TECH CO LTD
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Patent Information

Application Number
CN202421455952.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-07-11
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

Existing electrocoagulation forceps are not convenient for rapid pressing and resetting during surgery, which affects the efficiency of hemostatic operation.

Method used

A handheld minimally invasive electrocoagulation tweezers are designed, including clamping structure, sleeve, shell, gun handle and gun push key. By pressing the gun push key, the extrusion of the docking frame is realized, and combined with the return function of the spring, the extrusion and electrocoagulation of the electrode are realized.

Benefits of technology

The rapid pressing and reset functions are realized, improving the efficiency and convenience of hemostasis during surgery.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223081743U_ABST
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Abstract

The utility model discloses handheld minimally invasive electric coagulation forceps which comprise a clamping structure, the clamping structure is sleeved in the center of a sleeve, the side end of the sleeve is fixedly connected with a shell, the side end of the shell is fixedly connected with a plug seat, the lower end of the shell is fixedly connected with a gun type handle, and the lower end of the shell is further connected with a gun type push key in a pressing mode. The upper end of the gun-type push key is hinged to the shell in an overturning mode, the top of the gun-type push key is arranged in the shell and connected with the butt joint frame through a lengthening frame, the clamping structure comprises a first electrode and a second electrode, the side ends of the first electrode and the second electrode are connected with the protection base in a limiting mode, and pressing sleeves are slidably connected to the first electrode and the second electrode. The lower end of the pressing sleeve is fixedly connected with a butt-joint frame, one side of the pressing sleeve is elastically connected with a spring, and the side end of the protection seat is fixedly connected with a butt-joint wire. According to the handheld minimally invasive electric coagulation forceps, the purpose of electric coagulation treatment is achieved through the structural arrangement.
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Description

Technical Field

[0001] The utility model relates to the technical field of electrocoagulation forceps, in particular to a handheld minimally invasive electrocoagulation forceps. Background Technique

[0002] With the progress of technology, surgical treatment, as a conventional means, is applied more and more widely. During the operation, due to cutting body tissues, capillaries are often cut off. Hemostasis is a very important operation during and after the operation.

[0003] However, the current electrocoagulation forceps have the following problems: it is not convenient to perform quick pressing cooperation processing, and it is not convenient to perform reset work, so improvement is needed. Content of the Utility Model

[0004] The purpose of the utility model is to provide a handheld minimally invasive electrocoagulation forceps to solve the problems put forward in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: a handheld minimally invasive electrocoagulation forceps, including a clamping structure, the clamping structure is sleeved in the center of a sleeve, the side end of the sleeve is fixedly connected with a housing, the side end of the housing is fixedly connected with a plug socket, the lower end of the housing is fixedly connected with a pistol grip, and a pistol push button is also press-connected to the lower end of the housing;

[0006] The upper end of the pistol push button is hinged to the housing in a flip manner, and the top of the pistol push button is built in the housing and is connected with a docking frame through an extension frame;

[0007] The clamping structure includes a first electrode and a second electrode. The side ends of the first electrode and the second electrode are connected to a protection seat in a limiting manner, and a pressing sleeve is slidably connected to the first electrode and the second electrode. The lower end of the pressing sleeve is fixedly connected with a docking frame, one side of the pressing sleeve is elastically connected with a spring, and the side end of the protection seat is fixedly connected with a docking wire.

[0008] Specifically, the left side of the spring is in limiting contact with the housing and can be squeezed, so as to facilitate the reset of the docking frame and the pressing sleeve.

[0009] Specifically, the first electrode and the second electrode are connected to the docking wire through the protection seat, and can be energized through the docking wire. The docking wire is built in the housing and is connected to the plug socket at the side end.

[0010] Specifically, a joint is provided at the lower end of the pistol grip, and is connected to the outside through a wire through the joint, and the wire is communicated with the plug socket.

[0011] Specifically, the pressing sleeves on the first electrode and the second electrode can be displaced to squeeze the first electrode and the second electrode, so that the first electrode and the second electrode are combined.

[0012] Specifically, the sleeve has insulating properties.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] First, by installing the sleeve and the housing, the sleeve and the housing are fixedly connected, which can limit the connection of the clamping structure. At the same time, a gun-shaped handle is provided at the lower end of the housing, which is convenient for hand-held work. At the same time, a gun-shaped push button is provided on the housing, which can be pressed. When the gun-shaped push button is pressed, it can act on the extension plate at the lower end of the docking frame, so as to perform extrusion and pushing work.

[0015] Second, by installing the clamping structure, the first electrode and the second electrode in the clamping structure are both limited to the protection seat, and the docking frame and the pressing sleeve can move on the first electrode and the second electrode, so as to squeeze the first electrode and the second electrode, realizing the clamping forceps treatment work. At the same time, through the connection wire for power supply, the electrocoagulation treatment work can be carried out. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the main structure of the present utility model;

[0017] Figure 2 is a three-dimensional side view of the main body of the present utility model;

[0018] Figure 3 is a three-dimensional view of the clamping structure of the present utility model.

[0019] In the figure: 1 - clamping structure; 2 - sleeve; 3 - housing; 4 - gun-shaped push button; 5 - gun-shaped handle; 6 - plug socket; 7 - first electrode; 8 - second electrode; 9 - spring; 10 - docking frame; 11 - pressing sleeve; 12 - protection seat; 13 - connection wire. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0021] Please refer to Figures 1 - 3, the present utility model provides a technical solution: a handheld minimally invasive electrocoagulation forceps, including a clamping structure 1, the clamping structure 1 is sleeved in the center of a sleeve 2, the side end of the sleeve 2 is fixedly connected to a housing 3, the side end of the housing 3 is fixedly connected to a plug socket 6, the lower end of the housing 3 is fixedly connected to a gun-shaped handle 5, and a gun-shaped push button 4 is also press-connected to the lower end of the housing 3;

[0022] The upper end of the gun-shaped push button 4 is flip-hinged with the housing 3, and the top of the gun-shaped push button 4 is built into the housing 3 and is connected to a docking frame 10 through an extension frame;

[0023] The clamping structure 1 includes a first electrode 7 and a second electrode 8. The side ends of the first electrode 7 and the second electrode 8 are limitedly connected to a protection seat 12, and a pressing sleeve 11 is slidably connected to the first electrode 7 and the second electrode 8. The lower end of the pressing sleeve 11 is fixedly connected to a docking frame 10, and a spring 9 is elastically connected to one side of the pressing sleeve 11. The side end of the protection seat 12 is fixedly connected to a docking wire 13. By installing the sleeve 2 and the housing 3, and the sleeve 2 and the housing 3 are fixedly connected, the limiting connection of the clamping structure 1 can be carried out. At the same time, a gun-shaped handle 5 is provided at the lower end of the housing 3, which is convenient for hand-held work. At the same time, a gun-shaped push button 4 is provided on the housing 3, and the gun-shaped push button 4 can be pressed. When the gun-shaped push button 4 is pressed, it can act on the extension plate at the lower end of the docking frame 10, so as to carry out extrusion and pushing work.

[0024] The left side of the spring 9 is in limit contact with the housing 3 and can be extruded, so as to facilitate the reset of the docking frame 10 and the pressing sleeve 11.

[0025] The first electrode 7 and the second electrode 8 are connected to the docking wire 13 through the protection seat 12, and can be energized through the docking wire 13. The docking wire 13 is built into the housing 3 and is connected to the plug socket 6 at the side end. By installing the clamping structure 1, the first electrode 7 and the second electrode 8 in the clamping structure 1 are both limitedly arranged with the protection seat 12, and the docking frame 10 and the pressing sleeve 11 can move on the first electrode 7 and the second electrode 8, so as to carry out extrusion of the first electrode 7 and the second electrode 8, realizing the clamping forceps treatment work. At the same time, by energizing through the docking wire 13, the electrocoagulation treatment work can be carried out.

[0026] A joint is provided at the lower end of the gun-shaped handle 5, and is connected to the outside through a joint and a wire, and the wire is communicated with the plug socket 6.

[0027] Through the displacement of the pressing sleeve 11 on the first electrode 7 and the second electrode 8, the first electrode 7 and the second electrode 8 can be extruded, so that the first electrode 7 and the second electrode 8 are closed.

[0028] The sleeve 2 has insulating properties.

[0029] Working principle: When work is required, the user holds the gun-shaped handle 5 and is electrically connected to the outside through the connector at the lower end of the gun-shaped handle 5. During use, simply press the gun-shaped push key 4. At this time, the gun-shaped push key 4 rotates on the outer shell 3. The upper gun-shaped push key 4 contacts and presses against the extension plate at the lower end of the docking frame 10, causing the docking frame 10 and the pressing sleeve 11 to move, thereby being able to press the first electrode 7 and the second electrode 8. At the same time, the spring 9 is compressed. At this time, the first electrode 7 and the second electrode 8 are closed, and the docking wire 13 is electrically connected to the first electrode 7 and the second electrode 8 through the protective seat 12, capable of supplying electrical energy to the first electrode 7 and the second electrode 8. Electrocoagulation treatment is performed through the first electrode 7 and the second electrode 8 to complete the work.

[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A handheld minimally invasive electrocoagulation forceps, comprising a clamping structure (1), characterized in that: The clamping structure (1) is sleeved in the center of the sleeve (2). A housing (3) is fixedly connected to the side end of the sleeve (2). A plug socket (6) is fixedly connected to the side end of the housing (3). A gun-shaped handle (5) is fixedly connected to the lower end of the housing (3). A gun-shaped push key (4) is also press-connected to the lower end of the housing (3). The upper end of the gun-shaped push key (4) is flip-hinged to the housing (3). The top of the gun-shaped push key (4) is built into the housing (3) and is connected to the docking frame (10) through an extension frame. The clamping structure (1) includes a first electrode (7) and a second electrode (8). The side ends of the first electrode (7) and the second electrode (8) are connected to the protection seat (12) in a limited way. A pressing sleeve (11) is slidably connected to the first electrode (7) and the second electrode (8). The lower end of the pressing sleeve (11) is fixedly connected to the docking frame (10). A spring (9) is elastically connected to one side of the pressing sleeve (11). A docking wire (13) is fixedly connected to the side end of the protection seat (12).

2. The handheld minimally invasive electrocoagulation forceps according to claim 1, wherein: The left side of the spring (9) is in limited contact with the housing (3) and can be squeezed, so as to facilitate the reset of the docking frame (10) and the pressing sleeve (11).

3. The handheld minimally invasive electrocoagulation forceps according to claim 2, characterized in that: The first electrode (7) and the second electrode (8) are connected to the docking wire (13) through the protection seat (12), and can be energized through the docking wire (13). The docking wire (13) is built into the housing (3) and is connected to the plug socket (6) at the side end.

4. The handheld minimally invasive electrocoagulation forceps according to claim 3, characterized in that: A connector is provided at the lower end of the gun-shaped handle (5) and is connected to the outside through a wire. The wire is communicated with the plug socket (6).

5. The handheld minimally invasive electrocoagulation forceps according to claim 4, characterized in that: The pressing sleeve (11) on the first electrode (7) and the second electrode (8) can squeeze the first electrode (7) and the second electrode (8) through displacement, so that the first electrode (7) and the second electrode (8) are combined.

6. The handheld minimally invasive electrocoagulation forceps according to claim 5, wherein: The sleeve (2) has insulating properties.