一种及控型滴水电凝镊
By adding a drip tube and a water outlet to the electrocoagulation forceps and using physiological saline for cooling, the problem of forceps tip adhesion to tissue after electrocoagulation hemostasis is solved, thus simplifying surgical procedures and reducing patient suffering.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- MESSAIN (FOSHAN) TECH CO LTD
- Filing Date
- 2025-04-03
- Publication Date
- 2026-07-17
AI Technical Summary
Existing electrocoagulation forceps can cause the forceps tip to stick to human tissue due to high temperature after electrocoagulation hemostasis, resulting in secondary bleeding, increasing the complexity of the operation and the workload of doctors, and causing unnecessary pain to patients.
A controlled drip electrocoagulation forceps was designed. By setting a drip tube and a water outlet at the tip of the forceps, physiological saline is used for cooling. The drip tube is opened and closed by a positioning pin to prevent the forceps tip from sticking to the tissue.
It effectively avoids adhesion between the forceps tip and human tissue, simplifies the surgical process, reduces surgical complexity and the workload of doctors, and reduces patient suffering.
Smart Images

Figure CN224505556U_ABST
Abstract
Claims
1. A drip control type electric coagulation forceps, characterized in that, The controlled drip electrocoagulation tweezers include: a tweezer handle (1), a tweezer head (2) disposed at one end of the tweezer handle (1), a connecting seat (5) disposed at the other end of the tweezer handle (1), a connecting line (6) connected to the connecting seat (5), and a drip pipe (7) with one end passing through the connecting seat (5) and connected to the tweezer head (2), and the other end connected to an external water source.
2. The drip control electrocautery forceps according to claim 1, wherein, The tweezers (2) have a tweezer tip (3) at one end away from the tweezer handle (1).
3. The one-hand controlled drop-let electrocautery forceps according to claim 2, wherein, The tweezers tip (3) is provided with a water outlet (31).
4. The one-hand controlled drop-let electrocautery forceps according to claim 3, wherein, The water outlet (31) is connected to the drip tube (7) through the through hole inside the tweezers (2).
5. The one-hand controlled drop-let electrocautery forceps according to claim 4, wherein, The drip tube is an infusion hose.
6. The one-hand controlled drop-let electrocautery forceps according to claim 5, wherein, The inner wall of the tweezer handle (1) is provided with a positioning pin (4).
7. The one-hand controlled drop-let electrocautery forceps according to claim 6, wherein, The positioning pin (4) includes: a positioning seat (41) and a pin head (42) that matches the positioning seat (41).
8. The one-hand controlled drop-let electrocautery forceps according to claim 7, wherein, The side wall of the positioning seat (41) is provided with a wire hole (411).
9. The one-hand controlled drop-let electrocautery forceps according to claim 8, wherein, The pin (42) is provided with a hook (421).