Flushing type tip-adjustable abdominal electrocoagulation forceps
The flushing-type tip-adjustable peritoneal electrocoagulation forceps designed with a flexible sheet and a water conduit enables 360-degree rotation of the tip of the electrocoagulation forceps and direct delivery of saline to the hemostasis point, solving the problem of increased surgical incision caused by the inability of traditional electrocoagulation forceps to adjust the angle, and simplifying the surgical procedure.
Patent Information
- Application Number
- CN202422086008.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-11-29
- Filing Date
- 2024-08-27
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The inability to adjust the angle of the tip of traditional electrocoagulation forceps results in an increase in the patient's surgical incision, increasing the difficulty of the operation and the size of the wound.
A flushing-type tip-adjustable intraperitoneal electrocoagulation forceps was designed. The tip can be rotated 360 degrees through a flexible sheet and a water conduit. A water conduit is set up to directly deliver saline to the hemostasis point, reducing the difficulty of cleaning.
It effectively solves the problem that the tip of the electrocoagulation forceps cannot adjust the angle, reduces the increase of the surgical incision, simplifies the cleaning process of the hemostatic point, and protects the non-hemostatic point tissue.
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Figure CN223350318U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of medical devices, and in particular to a water-flushing tip-adjustable abdominal electrocoagulation forceps. Background Art
[0002] Bipolar coagulation forceps can provide more precise coagulation and hemostasis for small blood vessels and other structures. This works by heating the protein to coagulate and seal the blood vessels. Once the tissue reaches its coagulation and boiling point, the power automatically shuts off. Because the bipolar forceps are insulated, current is conducted only between the two tips. During coagulation, the current flows from one tip to the other, affecting the tissue between the tips while minimizing or maintaining the tissue outside the tips, thus protecting the tissue.
[0003] Bipolar coagulation forceps are often used to stop bleeding during abdominal surgery. However, because the tip of the current bipolar coagulation forceps is fixedly connected to the forceps arm, it is difficult for the tip of the forceps to reach the affected area without widening the patient's incision, which results in a larger surgical incision. Therefore, it is necessary to propose a flush-type, tip-adjustable abdominal coagulation forceps to address the problem of the traditional forceps' inability to adjust the angle, which results in a larger surgical incision. Utility Model Content
[0004] It is necessary to propose a water-flush tip-adjustable abdominal coagulation forceps to address the problem that the traditional electrocoagulation forceps cannot adjust the angle, which causes the patient's surgical incision to increase.
[0005] The present application proposes a water-flush type tip-adjustable peritoneal electrocoagulation forceps, comprising:
[0006] The clamp body includes a first arm and a second arm, the first arm and the second arm are hinged to each other, the first arm is provided with a first tip, the first tip is fixedly connected to the first arm, and the second arm is provided with a second tip, the second tip is fixedly connected to the second arm;
[0007] The support comprises a first flexible sheet and a second flexible sheet, wherein the first flexible sheet is disposed between the first support arm and the first tip, and the second flexible sheet is disposed between the second support arm and the second tip;
[0008] An angle adjuster includes a first water hose and a second water hose, wherein the first water hose is provided on the first flexible sheet and the second flexible sheet, and the second water hose is provided on the first flexible sheet and the second flexible sheet;
[0009] The electrode wires include a first electrode wire and a second electrode wire, wherein the first electrode wire is electrically connected to the first tip portion, and the second electrode wire is electrically connected to the second tip portion;
[0010] The water conduit comprises a first water conduit and a second water conduit, wherein the first water conduit is in communication with the first tip, and the second water conduit is in communication with the second tip.
[0011] The present application relates to a flush-type, tip-adjustable, intraperitoneal electrocoagulation forceps. A first arm is connected to a first tip by a first flexible sheet, which ensures that the first tip can rotate left and right by plus or minus 90 degrees around the first flexible sheet. A second arm is connected to a second tip by a second flexible sheet, which ensures that the second tip can rotate left and right by plus or minus 90 degrees around the second flexible sheet. When the forceps body is rotated, the first tip and the second tip can achieve a 360-degree rotation. This effectively solves the dilemma of the inability to adjust the angle of the electrocoagulation forceps tip, which results in an increase in the surgical incision of the patient. In order to reduce the difficulty of delivering saline to the hemostatic point, the present application also provides a water conduit. The first water conduit is connected to the first tip, and the second water conduit is connected to the second tip, so that the saline used for cleaning can reach the hemostatic point directly. It is worth mentioning that in order to ensure the consistency of the rotation angle of the two tips, water conduits are provided on both tips. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic structural diagram of a water-flush tip-adjustable peritoneal electrocoagulation forceps provided in one embodiment of the present application.
[0013] Figure 2 This is a schematic diagram of the connection relationship between the clamp body, support, angle adjuster, electrode wire and water conduit of a water-flushing tip-adjustable abdominal electrocoagulation forceps provided in one embodiment of the present application.
[0014] Figure 3 This is a schematic structural diagram of the first arm of a water-flush tip-adjustable abdominal electrocoagulation forceps provided in another embodiment of the present application.
[0015] Figure 4 A schematic diagram of the positional relationship among the forearm, grip arm, bending portion and through hole of a water-flushing tip-adjustable abdominal electrocoagulation forceps provided in yet another embodiment of the present application.
[0016] Figure 5 This is a schematic diagram of the positional relationship of a forearm, placement hole, first through slot, second through slot, first catheter, second catheter, first electrode wire and first water conduit of a water-flushing tip-adjustable abdominal electrocoagulation forceps provided in one embodiment of the present application.
[0017] Figure 6 This is a schematic diagram of the positional relationship of the forearm, placement hole, third catheter, fourth catheter, second electrode wire and second aqueduct of another water-flush tip-adjustable abdominal electrocoagulation forceps provided in one embodiment of the present application.
[0018] Figure 7This is a schematic diagram of the positional relationship of a support, angle adjuster, electrode wire, water conduit, first adjuster and second adjuster of a water-flushing tip-adjustable abdominal electrocoagulation forceps provided in one embodiment of the present application.
[0019] Figure 8 This is a schematic diagram of the positional relationship between the first arm, placement hole, first tip, water guide hole, first flexible sheet and center hole of a water-flushing tip-adjustable abdominal electrocoagulation forceps provided in one embodiment of the present application.
[0020] Reference numerals:
[0021] 100 - clamp body; 110 - first arm; 111 - forearm; 112 - grip arm; 113 - grip ring;
[0022] 114 - bending portion; 115 - through hole; 120 - second arm; 121 - placement hole; 122 - first through slot;
[0023] 123 - second through groove; 130 - first tip; 131 - water guide hole; 140 - second tip; 200 - support;
[0024] 210 - first flexible sheet; 211 - first flexible wall; 212 - second flexible wall; 213 - center hole;
[0025] 220 - second flexible sheet; 300 - angle adjuster; 310 - first water hose; 311 - first conduit;
[0026] 312 - second conduit; 313 - first water bag; 314 - second water bag; 315 - third water bag;
[0027] 320 - second water hose; 321 - third conduit; 322 - fourth conduit; 323 - fourth water bag;
[0028] 324 - fifth water bag; 325 - sixth water bag; 400 - electrode line; 410 - first electrode line;
[0029] 420 - second electrode line; 500 - water conduit; 510 - first water conduit; 520 - second water conduit;
[0030] 610-first regulator; 620-second regulator. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0032] The present application provides a water-flush type tip-adjustable peritoneal electrocoagulation forceps.
[0033] like Figure 1 As shown, in one embodiment of the present application, a water-flush type tip-adjustable abdominal electrocoagulation forceps includes a forceps body 100 , a support 200 , an angle adjuster 300 , an electrode wire 400 and a water conduit 500 .
[0034] The pliers body 100 includes a first arm 110 and a second arm 120, the first arm 110 and the second arm 120 are hinged to each other, the first arm 110 is provided with a first tip 130, the first tip 130 is fixedly connected to the first arm 110, and the second arm 120 is provided with a second tip 140, the second tip 140 is fixedly connected to the second arm 120.
[0035] Specifically, the pliers body 100 is composed of a first arm 110 and a second arm 120. The first arm 110 is provided with a forearm 111 and a placement hole 121. The second arm 120 is provided with a forearm 111 and a placement hole 121.
[0036] Specifically, the first arm 110 includes a forearm 111 , a gripping arm 112 , a gripping ring 113 , a bent portion 114 and a through hole 115 .
[0037] The supporter 200 includes a first flexible sheet 210 and a second flexible sheet 220 . The first flexible sheet 210 is disposed between the first arm 110 and the first tip 130 , and the second flexible sheet 220 is disposed between the second arm 120 and the second tip 140 .
[0038] Specifically, the first flexible sheet 210 and the second flexible sheet 220 have the same structure. The first flexible sheet 210 has a central hole 213 , a first flexible wall 211 , and a second flexible wall 212 . The second flexible sheet 220 has a central hole 213 , a first flexible wall 211 , and a second flexible wall 212 .
[0039] The angle adjuster 300 includes a first water hose 310 and a second water hose 320 . The first water hose 310 is disposed on the first flexible sheet 210 and the second flexible sheet 220 . The second water hose 320 is disposed on the first flexible sheet 210 and the second flexible sheet 220 .
[0040] Specifically, the first water hose 310 includes a first conduit 311 , a second conduit 312 , a first water bag 313 , a second water bag 314 , and a third water bag 315 .
[0041] The second water hose 320 includes a third conduit 321 , a fourth conduit 322 , a fourth water bag 323 , a fifth water bag 324 , and a sixth water bag 325 .
[0042] The electrode wires 400 include a first electrode wire 410 and a second electrode wire 420 . The first electrode wire 410 is electrically connected to the first tip 130 , and the second electrode wire 420 is electrically connected to the second tip 140 .
[0043] The water conduit 500 includes a first water conduit 510 and a second water conduit 520 . The first water conduit 510 is in communication with the first tip 130 , and the second water conduit 520 is in communication with the second tip 140 .
[0044] Specifically, the first arm 110 is connected to the first tip 130 via a first flexible sheet 210, which ensures that the first tip 130 can rotate around the first flexible sheet 210 by 90 degrees. The second arm 120 is connected to the second tip 140 via a second flexible sheet 220, which ensures that the second tip 140 can rotate around the second flexible sheet 220 by 90 degrees. When the forceps body 100 is rotated, the first tip 130 and the second tip 140 can achieve a 360-degree rotation. This effectively solves the problem of the electrocoagulation forceps tip being unable to adjust its angle, resulting in an increased surgical incision area for the patient. To reduce the difficulty of delivering saline to the hemostatic point, the present application also provides a water conduit 500, with the first water conduit 510 connected to the first tip 130 and the second water conduit 520 connected to the second tip 140, so that the saline used for cleaning can reach the hemostatic point directly. It is worth mentioning that in order to ensure the consistency of the rotation angles of the two tips, water pipes are set at both tips.
[0045] This application relates to a flush-type, tip-adjustable, intraperitoneal electrocoagulation forceps. The first and second tips 130, 140 are effectively the two electrodes of the forceps. A first electrode wire 410 and a second electrode wire 420 are electrically connected to the first and second tips 130, 140, respectively, enabling heating to coagulate protein and seal blood vessels. This ensures minimal or no impact on tissue outside the tip, thus protecting the tissue. When hemostasis is achieved, a water conduit at the tip delivers saline to the hemostasis site, minimizing disturbance to the wound.
[0046] like Figure 2 and Figure 3 As shown, in one embodiment of the present application, the first support arm 110 and the second support arm 120 each include a forearm 111 and a gripping arm 112. The forearm 111 and the gripping arm 112 are perpendicular to each other. The forearm 111 and the gripping arm 112 are fixedly connected. The gripping arm 112 is provided with a gripping ring 113. The forearm 111 of the first support arm 110 and the forearm 111 of the second support arm 120 are hingedly connected to each other.
[0047] This embodiment involves a first support arm 110 and a second support arm 120. Because patients undergoing abdominal surgery often have their bodies positioned perpendicular to the surgeon, the forearm 111 and grip arm 112 are perpendicular to each other, effectively adapting to this working environment. This design also facilitates the rotation of the forearm 111, allowing the tip to rotate 360 degrees.
[0048] like Figure 3 As shown, in one embodiment of the present application, a bent portion 114 is provided at one end of the forearm 111 near the grip arm 112. A through-hole 115 is provided in the bent portion 114. The through-hole 115 of the bent portion 114 of the first support arm 110 and the through-hole 115 of the bent portion 114 of the second support arm 120 overlap with each other. The ratio of the length of a chord of the bent portion 114 passing through the center of the through-hole 115 to the diameter of the through-hole 115 is within a range of greater than or equal to 2 and less than or equal to 4. The center of the through-hole 115 is located at the minor arc chord of the bent portion 114.
[0049] Specifically, the bent portion 114 is actually the hinged joint between the first arm 110 and the second arm 120. The through hole 115 of the bent portion 114 is used to install a bearing and a fixing pin. The through hole 115 of the bent portion 114 of the first arm 110 and the through hole 115 of the bent portion 114 of the second arm 120 overlap with each other, and are actually used to install the bearing and the fixing pin.
[0050] This embodiment relates to the bending portion 114. The center of the through hole 115 is set at the minor arc chord of the bending portion 114, ensuring that the first arm 110 and the second arm 120 can be attached to each other. This ensures that during the operation, regardless of the angle of synchronous rotation of the first tip 130 and the second tip 140, the first tip 130 and the second tip 140 can better clamp the hemostatic point. It is worth mentioning that when adjusting the angle of the tip, the first arm 110 and the second arm 120 attached to each other can ensure that the first tip 130 and the second tip 140 are attached to each other, thereby ensuring that the first tip 130 and the second tip 140 can be synchronously adjusted to the same bending angle.
[0051] like Figures 3 to 6 As shown, in one embodiment of the present application, the forearm 111 includes a placement hole 121, a first through-slot 122, and a second through-slot 123. The second through-slot 123 and the first through-slot 122 are symmetrically arranged relative to the center of the placement hole. The first through-slot 122 is arranged on the forearm 111. The second through-slot 123 and the first through-slot 122 are parallel to each other. The second through-slot 123 is arranged on the forearm 111 and is arranged relative to the first through-slot 122. The placement hole 121 is arranged on the forearm 111. The forearm 111 is arranged between the first through-slot 122 and the second through-slot 123.
[0052] This embodiment relates to forearm 111. The minor arc chord length of bend 114 is a multiple of the diameter of through hole 115, ranging from greater than or equal to 2 to less than or equal to 4 times. The larger internal space of bend 114 is required to accommodate angle adjuster 300, allowing the physician to adjust the angle of the tip according to actual conditions and reduce the length of the patient's dissection.
[0053] Based on this, the placement hole 121 is used to accommodate the water pipe 500. The first through groove 122 and the second through groove 123 are used to accommodate the connecting pipe of the angle adjuster 300.
[0054] like Figure 7 As shown, in one embodiment of the present application, the first flexible sheet 210 and the second flexible sheet 220 have the same structure. The first flexible sheet 210 includes a first flexible wall 211, a second flexible wall 212, and a central hole 213. The central hole 213 is provided between the first flexible wall 211 and the second flexible wall 212.
[0055] This embodiment involves a first flexible sheet 210 and a second flexible sheet 220. Since the flexible sheet connects the arm and the tip, and both the first tip 130 and the second tip 140 have outlets for saline solution, the first flexible sheet 210 and the second flexible sheet 220 need to be provided with a central hole 213 to accommodate the water conduit 500.
[0056] The first flexible wall 211 and the second flexible wall 212 are parallel to each other to ensure that when subjected to force, the first flexible sheet 210 or the second flexible sheet 220 can be stably bent to drive the first tip 130 or the second tip 140 to bend.
[0057] The center hole 213 is set between the first flexible wall 211 and the second flexible wall 212. Therefore, in order to ensure that the bending angles of the first flexible sheet 210 and the second flexible sheet 220 are the same, the first flexible sheet 210 and the second flexible sheet 220 need to be provided with a center hole 213 to accommodate the water pipe 500.
[0058] like Figure 8 As shown, in one embodiment of the present application, both the first tip 130 and the second tip 140 are provided with a water guide hole 131. The first water guide pipe 510 sequentially passes through the mounting hole 121 of the first arm 110, the central hole 213 of the first flexible sheet 210, and the water guide hole 131 of the first tip 130. The second water guide pipe 520 sequentially passes through the mounting hole 121 of the second arm 120, the central hole 213 of the second flexible sheet 220, and the water guide hole 131 of the second tip 140.
[0059] This embodiment relates to the installation structure of a water conduit 500. To reduce the difficulty of delivering saline to the hemostatic site, this application also provides a water conduit 500. The first water conduit 510 is connected to the first tip 130, and the second water conduit 520 is connected to the second tip 140. This allows the saline solution used for cleaning to reach the hemostatic site directly. It is worth noting that to ensure the consistency of the rotation angle of the two tips, water conduits are installed on both tips.
[0060] like Figure 7 As shown, in one embodiment of the present application, the first water hose 310 includes a first conduit 311, a second conduit 312, a first water bag 313, a second water bag 314, and a third water bag 315. The first water bag 313 is attached to the first flexible wall 211 of the first flexible sheet 210. The second water bag 314 is attached to the second flexible wall 212 of the second flexible sheet 220. The third water bag 315 is disposed between the two bent portions 114. The first conduit 311 is attached to the interior of the first through-slot 122 of the first support arm 110. The first conduit 311 is in communication with the first water bag 313 and the third water bag 315. The second conduit 312 is attached to the interior of the second through-slot 123 of the second support arm 120. The second conduit 312 is in communication with the second water bag 314 and the third water bag 315.
[0061] The water-flush tip-adjustable peritoneal electrocoagulation forceps further includes a first regulator 610 , which is attached to the third water bag 315 .
[0062] This embodiment relates to an angle adjuster 300. The first water bag 313 is attached to the first flexible wall 211 of the first flexible sheet 210, and the second water bag 314 is attached to the second flexible wall 212 of the second flexible sheet 220. When the first adjuster 610 is moved, causing the first adjuster 610 to squeeze the third water bag 315, the water storage capacity of the first water bag 313 and the second water bag 314, which were originally in an expanded state, changes. Before the first adjuster 610 is moved, the water storage capacity of the first water bag 313 and the second water bag 314 is the same. After the first adjuster 610 is moved, the water storage capacity of the first water bag 313 and the second water bag 314 is different. The first water bag 313 and the second water bag 314 will expand and shrink, shrink and expand, due to the first adjuster 610 squeezing the third water bag 315. This will cause the first flexible sheet 210 and the second flexible sheet 220 to bend. At this time, the first tip 130 and the second tip 140 rotate in the same direction.
[0063] like Figure 7As shown, in one embodiment of the present application, the second water hose 320 includes a third conduit 321, a fourth conduit 322, a fourth water bag 323, a fifth water bag 324, and a sixth water bag 325. The fourth water bag 323 is attached to the second flexible wall 212 of the first flexible sheet 210. The fifth water bag 324 is attached to the first flexible wall 211 of the second flexible sheet 220. The sixth water bag 325 is disposed between the two bent portions 114. The third conduit 321 is attached to the interior of the second through-slot 123 of the first support arm 110. The third conduit 321 is in communication with the fourth water bag 323 and the sixth water bag 325. The fourth conduit 322 is attached to the interior of the first through-slot 122 of the second support arm 120. The fourth conduit 322 is in communication with the fifth water bag 324 and the sixth water bag 325.
[0064] The water-flush tip-adjustable peritoneal electrocoagulation forceps further includes a second regulator 620 . The second regulator 620 is attached to the sixth water bag 325 .
[0065] This embodiment relates to an angle adjuster 300. The fourth water bag 323 is attached to the second flexible wall 212 of the first flexible sheet 210, and the fifth water bag 324 is attached to the first flexible wall 211 of the second flexible sheet 220. When the second adjuster 620 is moved, causing it to squeeze the sixth water bag 325, the water storage capacity of the previously expanded fourth water bag 323 and the previously expanded fifth water bag 324 changes. Before the second adjuster 620 is moved, the water storage capacity of the fourth water bag 323 and the fifth water bag 324 is the same. After the second adjuster 620 is moved, the water storage capacity of the fourth water bag 323 and the fifth water bag 324 becomes different. The fourth water bag 323 and the fifth water bag 324 expand and contract, contract and expand, as the second adjuster 620 squeezes the sixth water bag 325. This causes the first flexible sheet 210 and the second flexible sheet 220 to bend. At this time, the first tip 130 and the second tip 140 rotate in the same direction.
[0066] It is worth mentioning that in order to ensure that the first tip 130 and the second tip 140 rotate in the same direction, the first adjuster 610 and the second adjuster 620 can move independently or simultaneously in opposite directions, but cannot simultaneously move in the same direction.
[0067] like Figures 1 to 8 As shown, in one embodiment of the present application, the first electrode wire 410 is attached to the outer surface of the first water conduit 510 , and the second electrode wire 420 is attached to the outer surface of the second water conduit 520 .
[0068] This embodiment relates to the installation structure of the electrode wire 400. The electrode wire 400 is attached to the water conduit 500, which can effectively simplify the structure and ensure the reliable operation of the water-flush type tip-adjustable abdominal electrocoagulation forceps.
[0069] The various technical features of the above-described embodiments can be combined arbitrarily, and the execution order of the method steps is not restricted. In order to make the description concise, not all possible combinations of the various technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0070] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, and these modifications and improvements fall within the scope of protection of the present application. Therefore, the scope of protection of the present application shall be determined by the appended claims.
Claims
1. A water-flush tip-adjustable peritoneal electrocoagulation forceps, characterized in that: include: The clamp body includes a first arm and a second arm, the first arm and the second arm are hinged to each other, the first arm is provided with a first tip, the first tip is fixedly connected to the first arm, and the second arm is provided with a second tip, the second tip is fixedly connected to the second arm; The support comprises a first flexible sheet and a second flexible sheet, wherein the first flexible sheet is disposed between the first support arm and the first tip, and the second flexible sheet is disposed between the second support arm and the second tip; An angle adjuster includes a first water hose and a second water hose, wherein the first water hose is provided on the first flexible sheet and the second flexible sheet, and the second water hose is provided on the first flexible sheet and the second flexible sheet; The electrode wires include a first electrode wire and a second electrode wire, wherein the first electrode wire is electrically connected to the first tip portion, and the second electrode wire is electrically connected to the second tip portion; The water conduit comprises a first water conduit and a second water conduit, wherein the first water conduit is in communication with the first tip, and the second water conduit is in communication with the second tip.
2. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 1, characterized in that: The first support arm and the second support arm each include a forearm and a grip arm; The forearm and the grip arm are perpendicular to each other; The forearm and the grip arm are fixedly connected; The grip arm is provided with a grip ring; The forearm of the first support arm and the forearm of the second support arm are hinged to each other.
3. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 2, characterized in that: The forearm is provided with a bent portion at one end close to the grip arm; The bent portion is provided with a through hole; The through hole of the bent portion of the first arm and the through hole of the bent portion of the second arm overlap with each other; A ratio of a chord length of the bent portion passing through the center of the through hole to a diameter of the through hole is within a numerical range of greater than or equal to 2 and less than or equal to 4.
4. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 3, characterized in that: The forearm includes a placement hole, a first through slot and a second through slot; The second through groove and the first through groove are symmetrically arranged relative to the center of the placement hole; The forearm is arranged between the first through slot and the second through slot.
5. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 4, characterized in that: The first flexible sheet and the second flexible sheet have the same structure; The first flexible sheet includes a first flexible wall, a second flexible wall and a central hole; The central hole is disposed between the first flexible wall and the second flexible wall.
6. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 5, characterized in that: The first tip and the second tip are both provided with water guide holes; The first water conduit sequentially passes through the placement hole of the first support arm, the central hole of the first flexible sheet, and the water conduit hole of the first tip; The second water guide pipe sequentially passes through the placement hole of the second support arm, the central hole of the second flexible sheet, and the water guide hole of the second tip.
7. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 6, characterized in that: The first water belt includes a first conduit, a second conduit, a first water bag, a second water bag and a third water bag; The first water bag is attached to the first flexible wall of the first flexible sheet; The second water bag is attached to the second flexible wall of the second flexible sheet; The third water bag is arranged between the two bending parts; The first conduit is attached to the inside of the first through slot of the first support arm; The first conduit is in communication with the first water bag and the third water bag; The second conduit is attached to the interior of the second through slot of the second arm; The second conduit is in communication with the second water bag and the third water bag.
8. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 7, characterized in that: The second water belt includes a third conduit, a fourth conduit, a fourth water bag, a fifth water bag and a sixth water bag; The fourth water bag is attached to the second flexible wall of the first flexible sheet; The fifth water bag is attached to the first flexible wall of the second flexible sheet; The sixth water bag is arranged between the two bent parts; The third conduit is attached to the interior of the second through slot of the first arm; The third conduit is in communication with the fourth water bag and the sixth water bag; The fourth conduit is attached to the inside of the first through slot of the second arm; The fourth conduit is in communication with the fifth water bag and the sixth water bag.
9. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 8, characterized in that: The water-flush tip-adjustable peritoneal electrocoagulation forceps further comprises a first regulator and a second regulator; The first regulator is attached to the third water bag; The second regulator is attached to the sixth water bag.
10. The water-flush tip-adjustable peritoneal electrocoagulation forceps according to claim 9, characterized in that: The first electrode wire is attached to the outer surface of the first water conduit; The second electrode wire is attached to the outer surface of the second water conduit.