Clinical operating forceps

By designing adjustable-angle clinical surgical forceps, the operational challenges of toothless oval forceps when wiping blood at special surgical field depths have been solved, resulting in improved surgical efficiency and enhanced safety, reduced surgical risks and patient suffering, and improved surgeons' operating experience.

CN223695957UActive Publication Date: 2025-12-23DONGGUAN SONGSHAN LAKE CENT HOSPITAL (DONGGUAN SHILONG PEOPLES HOSPITAL DONGGUAN THIRD PEOPLES HOSPITAL DONGGUAN INST OF CARDIOVASCULAR DISEASES)
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Patent Information

Application Number
CN202422462632.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-12-23
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

Existing toothless oval forceps are insufficient for wiping blood at specific surgical field depths, leading to increased surgical risks, prolonged operation time, and a poor surgeon experience.

Method used

A clinical surgical forceps was designed, which adopts an adjustable angle rotating shaft and limiting component structure. The forceps head forms a 0-90° angle with the clamp through the rotating shaft. The rotating shaft is composed of a damped rotating shaft combination. The forceps handle is adapted to the fingers, which enhances the flexibility and safety of operation.

Benefits of technology

It improved surgical efficiency, reduced surgical risks and complications, decreased patient suffering, and enhanced the surgeon's experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

A pair of clinical operating forceps comprises two forceps bodies, a forceps head is arranged on the upper portion of each forceps body, the forceps heads are longitudinally and vertically arranged, the forceps heads are annular bodies, and the sections of the annular bodies are perpendicular to the horizontal plane. One end of the forceps head is connected with a rotating shaft, the forceps head is connected with the forceps clip through the lower end of the rotating shaft, and the outer surface of the rotating shaft is wrapped with a silicon rubber case; the middle part of the forceps body is a hinge part, and the forceps clip is connected with one end of the forceps arm through the hinge part; the lower portion of the pincer body is a pincer handle, the other end of each pincer arm is connected with the pincer handle, and a limiting piece is arranged between each pincer arm and the corresponding pincer handle. The angle of the forceps head is adjusted through the rotating shaft, so that special angle operation in the surgical field is achieved, the operative range of the surgery is expanded, surgical incisions and patient pain are reduced, risks and complications are reduced, the surgical efficiency and doctor operation experience are improved, and the operation difficulty and the misoperation rate are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of medical apparatus and instruments, and particularly relates to a clinical operation forceps. BACKGROUND

[0002] The function of the egg-shaped forceps in clinical operation is mainly to clamp knives, scissors, forceps, tweezers, treatment bowls and bent plates and the like, and the egg-shaped forceps can also be used to clamp dressings and instruments or to clamp internal organs and the like. According to the different tips, the egg-shaped forceps are divided into two types of toothed and toothless, the toothed egg-shaped forceps have horizontal lines on the tips and are mainly used for clamping objects, and the toothless egg-shaped forceps have no horizontal lines on the tips and are smooth and non-injurious and can be used for clamping fragile tissues such as internal organs. The egg-shaped forceps are also commonly used for clamping cotton balls such as iodine tincture cotton balls, iodophor cotton balls and alcohol cotton balls during large-area disinfection. During the operation process, especially when detailed operation is needed in the operation field, such as gynecological operation and laparoscopic operation, local bleeding or the need to remove deep blood stains may occur. At this time, the toothless egg-shaped forceps (also known as sponge forceps, holding forceps, disinfection forceps and the like) can safely clamp and move tissues due to the absence of sharp tooth edges, and at the same time, additional damage to the surrounding tissues is avoided, so the toothless egg-shaped forceps become the preferred tool for deep wiping of blood.

[0003] However, the deep wiping of blood in a special operation field has strict requirements on the skills of surgeons, which increases the operation risk (such as the occurrence of complications), increases the operation time and greatly reduces the operation experience of the surgeons or increases the number of misoperations. Therefore, a new technology is needed to improve the current situation. CONTENT OF THE UTILITY MODEL

[0004] In view of the problems in the prior art, the utility model provides a clinical operation forceps to improve the operation efficiency and safety, enhance the hemostatic effect, reduce the pain and complications of patients and improve the operation experience of surgeons.

[0005] The utility model discloses the following technical scheme is implemented: a clinical operation forceps, including two forceps body, the upper part of each forceps body is forceps head, the forceps head is vertically arranged in the longitudinal direction, the forceps head is annular body, the annular body section is oval, the annular body section is perpendicular to the horizontal plane, one end of the forceps head is connected with the pivot, the forceps head is connected with the forceps clamp through the lower end of the pivot, the outer surface of the pivot is wrapped with the silica gel sleeve, the upper part of the silica gel sleeve is bonded with the forceps head, the lower part of the silica gel sleeve is bonded with the forceps clamp, the middle part of the forceps body is the articulated part, the forceps clamp is connected with the forceps arm through the articulated part, the lower part of the forceps body is the forceps handle, the forceps arm is connected with the forceps handle, the limit piece is arranged between the forceps arm and the forceps handle, the limit piece is arc body, two forceps body are connected through the articulated part and are in the cross shape.

[0006] Further, the forceps head is rotated through the pivot and forms a 0-90° included angle with the forceps clamp.

[0007] Further, the rotating shaft is a damping rotating shaft, and the rotating shaft is combined by a nut, a gasket and a bolt.

[0008] Further, the rotating shaft has a whole section width a, and the pincer head and the pincer clamp have a section width b, and a < b.

[0009] Further, the limiting piece is arc-shaped, and the limiting piece is provided with a toothed structure.

[0010] Further, the pincer handle is a ring body, and the pincer handle is adapted to the human finger circumference along the contour.

[0011] Beneficial effects: the rotating shaft adjusts the angle of the pincer head, so that the pincer head can deviate from the plane of the pincer body to achieve the effect of a special operation field angle, which increases the operation range in clinical surgery, avoids the increase of patient pain caused by the increase of surgical incision to expand the operation field, reduces the operation risk and complications, improves the operation efficiency, reduces the operation difficulty of the surgeon and the occurrence of misoperation, and ensures the smooth implementation of the operation. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a front view of a clinical surgical forceps according to an embodiment of the present application.

[0013] Figure 2 It is a left view of a clinical surgical forceps according to an embodiment of the present application.

[0014] Figure 3 It is a rotating shaft structure schematic view according to an embodiment of the present application.

[0015] Figure 4 It is a perspective view of a clinical surgical forceps according to an embodiment of the present application.

[0016] In the figure: pincer head-10, ring body-11, rotating shaft-12, silica gel sleeve-13, pincer clamp-14, nut-15, gasket-16, bolt-17, hinged part-20, pincer arm-30, limiting piece-31, pincer handle-32, pincer body-40. DETAILED DESCRIPTION

[0017] The present application will be further described in detail in the specification, drawings and embodiments.

[0018] The utility model discloses a clinical operation forceps, including two forceps body 40, the upper portion of every forceps body is forceps head 10, the forceps head 10 vertical arrangement is longitudinally, the forceps head 10 is annular body 11, the annular body 11 section is oval, the annular body 11 section is perpendicular with horizontal plane, the one end of forceps head 10 links pivot 12, makes the movable range of forceps head 10 more accurate through the pivot 12 of forceps head 10 part addition pivot 12, can reach the effect of special operation field angle, the forceps head 10 is connected with forceps clamp 14 through the lower end of pivot 12, the outer surface of pivot 12 is wrapped with silica gel cover 13, the upper portion of silica gel cover 13 is bonded with forceps head 10, the lower portion of silica gel cover 13 is bonded with forceps clamp 14, and the silica gel cover 13 wrapped on the outer surface of pivot 12 can avoid the convex joint formed by pivot 12 when moving to cause unnecessary secondary injury to the wound, the middle part of forceps body 40 is articulated 20, and forceps clamp 14 is connected with forceps arm 30 through articulated portion 20, the lower part of forceps body 40 is forceps handle 32, forceps arm 30 is connected with forceps handle 32, and the spacing piece 31 is arranged between forceps arm 30 and forceps handle 32, and the spacing piece 31 is arc body, and two forceps bodies are connected in cross shape through articulated portion 20.

[0019] In the embodiment, the forceps head 10 is rotated through the pivot 12, and forms a 0-90° angle with the forceps clamp 14.

[0020] In the embodiment, the pivot 12 is a damping pivot 12, which is combined by a nut 15, a gasket 16 and a bolt 17. The positioning rotation is realized by increasing the friction between the gasket 16 and the nut 15, so as to ensure the flexibility of the pivot 12.

[0021] In the embodiment, the overall section width of the pivot 12 is a, and the section width of the forceps head 10 and the forceps clamp 14 is b, and a<b.

[0022] In the embodiment, the spacing piece is arc-shaped, and the spacing piece 31 is provided with a toothed structure. The spacing piece 31 can limit the two forceps handles 32, so as to improve the practicability during the operation.

[0023] In the embodiment, the forceps handle 32 is an annular body 11, and the contour of the forceps handle 32 is adapted to the finger circumference of the human body.

[0024] The working steps of the utility model are as follows:

[0025] Ensure that the surgical forceps are clean and sterile, and have been disinfected according to medical standards. Check that all parts of the surgical forceps are complete, especially the pivot, silicone sleeve, and limiting piece, and confirm that there is no damage or looseness. The doctor or assistant will put their fingers through the ring-shaped bodies of the two handle, ensuring that the fingers naturally fit the contour of the handle, and adjust the position of the hands so that the handle is closely fitted to the palm, and the fingers can easily control the opening and closing of the arm.

[0026] Using the pivot on the head, according to the needs of the operation, gently turn the head to form an appropriate angle (0-90°) with the clamp, and observe and confirm whether the angle between the head and the clamp reaches the best state for operation. Gently close the arm to pick up the cotton with the closure of the clamp.

[0027] During operation, pay attention to keep the arm stable and the angle of the head stable to avoid unnecessary damage. After releasing the picked cotton, you can adjust the angle of the head and the opening of the arm according to your needs to prepare for the next operation. After the operation, clean and disinfect the surgical forceps according to medical standards. Pay special attention to thoroughly clean the pivot, silicone sleeve, and other parts that are prone to dirt. After disinfection, store the surgical forceps in a designated location for future use.

[0028] Finally, it should be noted that the above examples are only used to illustrate the technical solutions of the present application, and are not limited thereto. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some or all of the technical features. These modifications or substitutions do not change the essence of the corresponding technical solutions, and they should be covered within the scope of the claims and description of the present application.

Claims

1. A clinical surgical forceps comprising two forceps bodies, characterized in that, The upper part of each said plier body is a plier head, which is vertically arranged longitudinally, the plier head is an annular body, the cross section of the annular body is oval, and the cross section is perpendicular to the horizontal plane; one end of the plier head is connected with a rotating shaft, the plier head is connected with a plier clamp through the lower end of the rotating shaft, the outer surface of the rotating shaft is wrapped with a silica gel sleeve, the upper part of the silica gel sleeve is bonded with the plier head, and the lower part of the silica gel sleeve is bonded with the plier clamp; the middle part of the plier body is a hinged part, the plier clamp is connected with a plier arm through the hinged part; the lower part of the plier body is a plier handle, the plier arm is connected with the plier handle, a limiting piece is arranged between the plier arm and the plier handle, and the limiting piece is an arc-shaped body; two said plier bodies are connected through the hinged part to form a cross-shaped structure.

2. The surgical forceps according to claim 1, wherein: The plier head is rotated through the rotating shaft to form an angle of 0-90° with the plier clamp.

3. The surgical forceps according to claim 1, wherein: The rotating shaft is a damping rotating shaft, which is combined by a nut, a gasket and a bolt.

4. The surgical forceps according to claim 1, wherein: The overall cross section width of the rotating shaft is a, and the cross section width of the plier head and the plier clamp is b, a<b.

5. The surgical forceps according to claim 1, wherein: The limiting piece is arc-shaped, and a toothed structure is arranged on the limiting piece.

6. The surgical forceps according to claim 1, wherein: The plier handle is an annular body, and the contour of the plier handle is adapted to the finger circumference of a human body.