CN214908008U - Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down - Google Patents

Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down Download PDF

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Publication number
CN214908008U
CN214908008U CN202120725592.9U CN202120725592U CN214908008U CN 214908008 U CN214908008 U CN 214908008U CN 202120725592 U CN202120725592 U CN 202120725592U CN 214908008 U CN214908008 U CN 214908008U
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China
Prior art keywords
coagulation forceps
connecting rod
electric coagulation
fixed
movable
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Expired - Fee Related
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CN202120725592.9U
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Chinese (zh)
Inventor
唐勇
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Nanjing First Hospital
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Nanjing First Hospital
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Abstract

The utility model belongs to the field of medical equipment, a plastic type hemostasis bipolar coagulation tweezers of centre gripping from top to bottom is related to, include: the electric coagulation forceps comprise an electric coagulation forceps main body, a fixed connecting rod, a fixed electric coagulation forceps head, a movable connecting rod, a movable electric coagulation forceps head, a fixed seat, a plurality of spring pieces, a host machine connecting wire and a liquid conveying pipe, wherein one end of the electric coagulation forceps main body is sequentially connected with the fixed connecting rod and the fixed electric coagulation forceps head into a whole, and the other end of the electric coagulation forceps main body is connected with the fixed seat; the movable connecting rod is arranged above the fixed connecting rod, and one end of the movable connecting rod is integrally connected with the movable electric coagulation forceps head; one end of the spring piece is arranged on the movable connecting rod, and the other end of the spring piece is arranged on the fixed seat; the main machine connecting line and the infusion tube are connected with the electric coagulation forceps main body through the fixing seat. This upper and lower centre gripping plastic type hemostasis bipolar coagulation forceps can effectively solve the hemostasis problem of neurosurgery special part, and the art person still exerts according to the horizontal direction, and stability is high, and clinical use effect is good.

Description

Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down
Technical Field
The utility model belongs to the field of medical equipment, especially, relate to a plastic type hemostasis bipolar coagulation tweezers of centre gripping from top to bottom.
Background
Neurosurgery is the electric coagulation forceps of current conventional use for the horizontal direction centre gripping, but at the operation of handling brain deep tissue, or involve the sinus wall (including upper sagittal sinus, lower sagittal sinus, sponge sinus etc.), the cerebral sickle, when important parts such as cerebellum curtain bleed, often hardly carry out the clamping electric coagulation hemostasis through the horizontal direction centre gripping, because the sinus wall, the cerebral sickle, the cerebellum curtain etc. are unobstructed to be upper and lower two-layer dura mater structure and constitute, it is located between upper and lower two-layer dura mater structure to bleed, the horizontal direction centre gripping can't be effectively closed with the point of bleeding between upper and lower two-layer dura mater structure, can cause the dura mater to be heated further shrink along with the increase of electric coagulation even, the bleeding mouth is bigger and bigger, lead to stanching more difficult.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to provide a bipolar coagulation forceps for treating hemorrhage of deep brain tissue or hemorrhage of sinus wall, brain sickle, cerebellum and other parts.
According to the utility model discloses an aspect provides a plastic type hemostasis bipolar coagulation forceps of centre gripping from top to bottom, include: the electric coagulation forceps comprise an electric coagulation forceps main body, a fixed connecting rod, a fixed electric coagulation forceps head, a movable connecting rod, a movable electric coagulation forceps head, a fixed seat, a plurality of spring pieces, a host machine connecting wire and a liquid conveying pipe, wherein one end of the electric coagulation forceps main body is sequentially connected with the fixed connecting rod and the fixed electric coagulation forceps head into a whole, and the other end of the electric coagulation forceps main body is connected with the fixed seat; the movable connecting rod is arranged above the fixed connecting rod, and one end of the movable connecting rod is integrally connected with the movable electric coagulation forceps head; one end of the spring piece is arranged on the movable connecting rod, and the other end of the spring piece is arranged on the fixed seat; the main machine connecting wire and the infusion tube are connected with the electric coagulation forceps main body through a fixed seat, and the inner end surface of the fixed electric coagulation forceps head (A3) is arranged in parallel with the outer end surface of the movable electric coagulation forceps head (B2).
According to the exemplary embodiment of the present invention, the section of the electric coagulation forceps main body is a sealing groove type.
According to the utility model discloses an exemplary embodiment, the fixed connecting rod is the opening cell type, sets up the slide rail on the fixed connecting rod upper portion.
According to the utility model discloses an exemplary embodiment, the swing joint pole is the opening cell type, and the bottom of swing joint pole sets up the spout.
According to the utility model discloses an exemplary embodiment, the inside electric connection module that sets up of fixing base, electric connection module's one end sets up first connection port, and electric connection module's the other end sets up second connection port and third connection port, and first connection port is connected with second connection port and third connection port electricity respectively.
According to an exemplary embodiment of the present invention, the spring plate includes an insulated conductor spring plate having a conductor therein.
According to the exemplary embodiment of the present invention, the first connection port is connected with one end of the insulated conductor spring piece through the third connection port.
According to an exemplary embodiment of the invention, the first connection port is connected with the electric coagulation forceps body through a second connection port.
According to the exemplary embodiment of the present invention, the first connection port is connected with a host connection line.
According to the utility model discloses an exemplary embodiment, the infusion pipeline is buried underground in electric coagulation forceps main part and fixed connection pole cavity to the export of infusion pipeline is located between fixed electric coagulation forceps head and the activity electric coagulation forceps head, the transfer line adopts flexible macromolecular material to make.
Compared with the prior art, the utility model discloses a plastic hemostasis bipolar coagulation tweezers of upper and lower centre gripping through comprehensive structural design, has the direction of exerting oneself of upper and lower centre gripping, and electricity congeals head end plastic type, can effectively solve the hemostasis problem at key position in the art, the safety of guarantee operation and patient's treatment.
Drawings
Fig. 1 is a schematic diagram of an upper and lower clamping plastic hemostatic bipolar coagulation forceps according to the present invention;
FIG. 2 is a schematic cross-sectional view of a stationary connecting rod of the plastic hemostatic bipolar coagulation forceps with upper and lower clamping according to the present invention;
FIG. 3 is a schematic diagram of the fixed connecting rod and the movable connecting rod of the plastic hemostatic bipolar electric coagulation forceps with upper and lower clamping according to the present invention;
fig. 4 is another schematic view of the upper and lower clamping plastic hemostatic bipolar coagulation forceps according to the present invention.
In the figure, A1-an electric coagulation forceps main body, A2-a fixed connecting rod, A21-a sliding rail, A3-a fixed electric coagulation forceps head, B1-a movable connecting rod, B12-a sliding chute, B2-a movable electric coagulation forceps head, a C-fixed seat, C1-an electrical connection module, C2-a first connection port, C3-a second connection port, C4-a third connection port, D-a plurality of spring pieces, D1-an insulated conductor spring piece, an E-host machine connecting line and an F-infusion tube.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1, the utility model discloses a plastic hemostasis bipolar coagulation forceps of upper and lower centre gripping according to the utility model, include: the electric coagulation forceps comprise an electric coagulation forceps body A1, a fixed connecting rod A2, a fixed electric coagulation forceps head A3, a movable connecting rod B1, a movable electric coagulation forceps head B2, a fixed seat C, a plurality of spring pieces D, a host machine connecting line E and an infusion tube F.
Specifically, one end of an electric coagulation forceps main body A1 is sequentially connected with a fixed connecting rod A2 and a fixed electric coagulation forceps head A3 integrally, and the other end of the electric coagulation forceps main body A1 is connected with a fixed seat C; the movable connecting rod B1 is arranged above the fixed connecting rod A2, and one end of the movable connecting rod B1 is integrally connected with the movable electrocoagulation forceps head B2; one end of the spring piece D is arranged on the movable connecting rod B1, and the other end of the spring piece D is arranged on the fixed seat C; the main machine connecting wire E and the infusion tube F are connected with the electric coagulation forceps main body A1 through the fixing seat C, and the inner end face of the fixed electric coagulation forceps head A3 is arranged in parallel with the outer end face of the movable electric coagulation forceps head B2. The fixed electrocoagulation forceps head A3 and the movable electrocoagulation forceps head B2 can be plated with metal and can be sterilized and packaged in a plastic mode at one time, so that the sanitation and safety of patients are guaranteed, and cross infection is prevented.
The comprehensive design of the electric coagulation forceps body A1, the fixed connecting rod A2, the movable connecting rod B1 and the spring piece D ensures the hand feeling of holding, facilitates the holding in the horizontal direction of an operator, can meet the length requirement of deep surgery, and ensures the stability in the surgery.
As shown in figure 2, the section of the electric coagulation forceps body A1 is of a sealed groove type.
As shown in FIG. 3, the fixed connecting rod A2 is in the shape of an open slot, and the upper part of the fixed connecting rod A2 is provided with a slide rail A21.
The movable connecting rod B1 is an open groove type, and the bottom of the movable connecting rod B1 is provided with a sliding groove B12.
The movable connecting rod B1 can slide on the fixed connecting rod A2 after being stressed. The length of the movable connecting rod B1 is less than that of the fixed connecting rod A2.
As shown in fig. 4, an electrical connection module C1 is disposed inside the fixing base C, a first connection port C2 is disposed at one end of the electrical connection module C1, a second connection port C3 and a third connection port C4 are disposed at the other end of the electrical connection module C1, and the first connection port C2 is electrically connected to the second connection port C3 and the third connection port C4, respectively.
The spring plate D comprises an insulated conductor spring plate D1 containing a conductor inside.
The first connection port C2 is connected to one end of the insulated conductor spring piece D1 through the third connection port C4.
The first connection port C2 is connected to the body of the electrocoagulation forceps a1 via a second connection port C3.
The first connection port C2 is connected to the host connection line E.
As shown in figure 4, the infusion tube F is made of flexible polymer materials, one end of the infusion tube F is externally connected with an infusion apparatus, the other end of the infusion tube F is embedded in the cavity of the electric coagulation forceps main body A1 and the fixed connecting rod A2, and the outlet of the other end of the infusion tube F is positioned between the fixed electric coagulation forceps head A3 and the movable electric coagulation forceps head B2.
When the device is in actual use, when hemostasis treatment is carried out on target tissues, drug auxiliary treatment can be carried out as required, and the infusion tube F plays a role in conveying drug fluid, so that the heat coagulation damage caused by electrocoagulation heat can be effectively reduced, the electrocoagulation effect is not influenced, and the phenomenon that the visual field is distorted due to light refraction caused by water drops is avoided. The transfusion tube F can be designed into an end part spray type according to the requirement.
According to the utility model discloses a plastic type hemostasis bipolar coagulation tweezers during operation about centre gripping, the art person uses the type ware of moulding to mould fixed electricity congeals tweezers head A3 and activity electricity congeals tweezers head B2 after, places in the position of bleeding, then grips the spring leaf D structure of tail end, makes it slide on fixed connecting rod A2 through promoting movable connecting rod B1, and movable electricity congeals tweezers head B2 and realizes carrying out the clamp to the position of bleeding after being close to gradually and close the electricity and congeal hemostasis. Can effectively stop bleeding of special parts of neurosurgery, accords with anatomical characteristics, and still exerts force according to the horizontal direction, and stability is high, and clinical use effect is good.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above description is only the embodiments of the present invention, and is not intended to limit the scope of the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (10)

1. The utility model provides a plastic hemostasis bipolar coagulation forceps of centre gripping from top to bottom, its characterized in that, plastic hemostasis bipolar coagulation forceps of centre gripping from top to bottom includes: the electric coagulation forceps comprise an electric coagulation forceps main body (A1), a fixed connecting rod (A2), a fixed electric coagulation forceps head (A3), a movable connecting rod (B1), a movable electric coagulation forceps head (B2), a fixing seat (C), a plurality of spring pieces (D), a host machine connecting line (E) and a liquid conveying pipe (F), wherein one end of the electric coagulation forceps main body (A1) is sequentially connected with the fixed connecting rod (A2) and the fixed electric coagulation forceps head (A3) into a whole, and the other end of the electric coagulation forceps main body (A1) is connected with the fixing seat (C); the movable connecting rod (B1) is arranged above the fixed connecting rod (A2), and one end of the movable connecting rod (B1) is integrally connected with the movable electrocoagulation forceps head (B2); one end of the spring piece (D) is fixedly connected with the movable connecting rod (B1), and the other end of the spring piece (D) is fixedly connected with the fixed seat (C); the main machine connecting wire (E) and the infusion tube (F) are connected with the electric coagulation forceps main body (A1) through the fixing seat (C), and the inner end face of the fixed electric coagulation forceps head (A3) is parallel to the outer end face of the movable electric coagulation forceps head (B2).
2. The upper and lower clamping moldable hemostatic bipolar coagulation forceps according to claim 1, wherein the forceps body (A1) is designed in a sealing groove type.
3. The upper and lower clamping plastic hemostatic bipolar coagulation forceps as claimed in claim 1, wherein the fixed connecting rod (A2) is of an open groove type design, and the upper part of the fixed connecting rod (A2) is provided with a slide rail (A21).
4. The upper and lower clamping plastic type hemostatic bipolar coagulation forceps as claimed in claim 3, wherein the movable connecting rod (B1) is of an open groove type design, the bottom of the movable connecting rod (B1) is provided with a sliding groove (B12), and the shape of the sliding groove (B12) is matched with that of the sliding rail (A21).
5. The up-down clamping plastic hemostatic bipolar coagulation forceps according to claim 1, wherein an electrical connection module (C1) is arranged inside the fixing base (C), one end of the electrical connection module (C1) is provided with a first connection port (C2), the other end of the electrical connection module (C1) is provided with a second connection port (C3) and a third connection port (C4), and the first connection port (C2) is electrically connected with the second connection port (C3) and the third connection port (C4), respectively.
6. The upper and lower clamping moldable hemostatic bipolar coagulation forceps according to claim 5, wherein the spring plate (D) comprises an insulated conductor spring plate (D1) containing a conductor therein.
7. The upper and lower clamping moldable hemostatic bipolar coagulation forceps according to claim 6, wherein the first connection port (C2) is connected with one end of the spring leaf of insulated conductor (D1) through the third connection port (C4).
8. The upper and lower clamping moldable hemostatic bipolar coagulation forceps according to claim 7, wherein the first connection port (C2) is connected to the coagulation forceps body (A1) through the second connection port (C3).
9. The upper and lower clamping moldable hemostatic bipolar coagulation forceps according to claim 8, wherein the first connection port (C2) is connected to the host connection line (E).
10. The bipolar coagulation forceps with upper and lower clamping plasticity for hemostasis as claimed in claim 1, wherein the infusion tube (F) is embedded in the cavity of the coagulation forceps main body (A1) and the fixed connecting rod (A2), and the outlet of the infusion tube (F) is positioned between the fixed coagulation forceps head (A3) and the movable coagulation forceps head (B2).
CN202120725592.9U 2021-04-09 2021-04-09 Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down Expired - Fee Related CN214908008U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120725592.9U CN214908008U (en) 2021-04-09 2021-04-09 Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120725592.9U CN214908008U (en) 2021-04-09 2021-04-09 Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down

Publications (1)

Publication Number Publication Date
CN214908008U true CN214908008U (en) 2021-11-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120725592.9U Expired - Fee Related CN214908008U (en) 2021-04-09 2021-04-09 Plastic hemostasis bipolar electric coagulation forceps capable of being clamped up and down

Country Status (1)

Country Link
CN (1) CN214908008U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20211130

CF01 Termination of patent right due to non-payment of annual fee