A surgical blade and a microwave surgical blade

CN224612703UActive Publication Date: 2026-08-11BEIJING HENGFUSITE TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0002]微波手术刀是微创外科手术中的常用器械,微波手术刀的手术刀头是手术中实施组织切割的关键部件,传统微波手术刀的手术刀头1的结构,如图1图2所示,该刀头1包括由第一表面101和第二表面102构成上下两面的切割端,其中第一表面101和第二表面102均为无弧度的平面,导致进行腔镜等手术时,使用传统刀头切割组织,手术操作医师无法同时观察刀头上该两个表面与所切割组织的相对位置,且传统刀头也无法和所切割组织实现紧密贴合,影响手术效果,这些问题都亟待解决

Benefits of technology

[0005]对于采用本实用新型技术方案的手术刀头,可实现手术刀头两表面在手术实施过程中均能更紧密贴合切割组织,手术操作医师可同时观察手术刀头两表面相对于切割组织位置,提高切割精确度等技术效果。

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Abstract

A surgical blade tip includes a cutting end and a coaxial cylindrical interface end. The cutting end includes a first surface, a second surface, and a foremost edge portion. The cutting end, with the first and second surfaces forming its upper and lower surfaces, is generally arc-shaped and upward-curved. Using the cross-section of the coaxial cylindrical interface end as the observation plane, the foremost edge portion of the cutting end, around its central axis, exhibits a clockwise torsion angle ranging from 0 to 45 degrees. This surgical blade tip allows both surfaces to more closely adhere to the tissue being cut during surgery, enabling the surgeon to simultaneously observe the positions of both surfaces relative to the tissue, thus improving cutting accuracy.
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Description

Technical Field

[0001] This utility model relates to a medical device, namely a surgical blade and a microwave surgical blade on which the blade is mounted. Background Technology

[0002] Microwave scalpels are commonly used instruments in minimally invasive surgery. The scalpel tip is the key component for tissue cutting during surgery. The structure of the traditional microwave scalpel tip 1 is as follows: Figure 1 , Figure 2 As shown, the blade 1 includes a cutting end consisting of a first surface 101 and a second surface 102 forming upper and lower cutting ends. Both the first surface 101 and the second surface 102 are flat planes without curvature. This means that when performing laparoscopic or other surgeries, the surgeon cannot simultaneously observe the relative positions of the two surfaces on the blade and the tissue being cut. Furthermore, the traditional blade cannot achieve a close fit with the tissue being cut, affecting the surgical outcome. These problems urgently need to be solved. Utility Model Content

[0003] The present invention aims to solve the technical problem of how to make the surgical blade fit more closely and cut tissue more precisely during surgery.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a surgical blade tip, comprising a cutting end and a coaxial cylindrical interface end, wherein the cutting end includes a first surface, a second surface, and a foremost edge portion; characterized in that: the first surface and the second surface, forming the upper and lower surfaces, of the cutting end are generally arc-shaped and upward-curved. The surgical blade tip is further characterized in that: taking the cross-section of the coaxial cylindrical interface end as the observation plane, the foremost edge portion of the cutting end, around the central axis of the coaxial cylindrical interface end, has a torsion angle in a clockwise direction, the torsion angle ranging from 0 to 45 degrees. The surgical blade tip is further characterized in that: the foremost edge portion of the cutting end, relative to the central axis of the coaxial cylindrical interface end, has an upward curvature of 0-3 mm. The surgical blade tip is further characterized in that: both the first surface and the second surface are based on an arc-shaped curve, with a wave-shaped raised surface at the center of the surface, the height range of the wave-shaped raised surface relative to the corresponding arc-shaped curve base being 0-2mm. The surgical blade tip is further characterized in that: the torsion angle is 12 degrees. The surgical blade tip is further characterized in that: the maximum width of the surgical blade tip is 2-5mm, and the maximum length is 20-25mm. The surgical blade tip is further characterized in that: the maximum width of the surgical blade tip is 4mm, and the maximum length is 22.3mm. The surgical blade tip is further characterized in that: the foremost edge of the cutting end can be either a continuous curved cutting edge or a serrated cutting edge. The surgical blade tip is further characterized in that: the surgical blade tip is an integral structure, manufactured by metal powder injection molding. A microwave surgical blade, characterized in that the surgical blade tip is mounted on the microwave surgical blade.

[0005] The surgical blade tip using the technical solution of this utility model can achieve a closer fit between the two surfaces of the surgical blade tip and the tissue being cut during the operation. The surgeon can simultaneously observe the position of the two surfaces of the surgical blade tip relative to the tissue being cut, thereby improving the cutting accuracy and other technical effects. Attached Figure Description

[0006] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0007] Figure 1 , Figure 2 This is a schematic diagram of the overall structure of a microwave surgical scalpel head using existing technology;

[0008] Figure 3 , Figure 4 , Figure 5 This is a three-dimensional schematic diagram of the surgical blade head in a specific embodiment of this utility model;

[0009] Figure 6 This is a cross-sectional view of the upward tilt height of the foremost edge of the scalpel tip in a specific embodiment of this utility model;

[0010] Figure 7 This is a side view showing the height of the upward curve of the foremost edge of the scalpel tip in a specific embodiment of this utility model;

[0011] Figure 8 , Figure 10 This is a projection view of the surface of the scalpel head in a specific embodiment of this utility model;

[0012] Figure 9 This is a side sectional view of the height of the ridge peaks on the surface of the scalpel head in a specific embodiment of this utility model;

[0013] Figure 11 This is a projection view of the surface of the scalpel head in another specific embodiment of the cutting edge shape of this utility model. Detailed Implementation

[0014] like Figure 3 , Figure 4 As shown, the surgical blade 2 of this utility model includes a cutting end with a first surface 201 and a second surface 202, and a coaxial cylindrical interface end 203 with a hole opened along the central axis. The coaxial cylindrical interface end 203 is connected to other microwave coaxial transmission components, and the inner conductor of the other microwave coaxial transmission components is inserted into the hole opened along the central axis of the coaxial cylindrical interface end 203. The cutting end, formed by the first surface 201 and the second surface 202, has an overall arc-shaped upward curve. The cutting end has a leading edge portion 204, which can be either a continuous curved cutting edge or a serrated cutting edge (e.g.,...). Figure 11 (The cutting edge shape of the blade shown).

[0015] The surgical blade 2 of this invention, with the cross-section of the coaxial cylindrical interface end 203 as the observation plane, has a torsion angle 204 located at the foremost edge portion 204 of the cutting end, which, around the central axis of the coaxial cylindrical interface end 203, exists in a clockwise direction. This torsion angle ranges from 0 to 45 degrees, preferably 12 degrees. Figure 5 (As shown). The foremost edge portion 204 of the cut end has an upward tilt of 0-3mm relative to the central axis of the coaxial cylindrical interface end 203 (e.g.). Figure 6 , Figure 7 (As shown). Both the first surface 201 and the second surface 202 are based on an arc-shaped curve, with a wave-shaped ridge at the center of the surface. The height of the ridge at the ridge position 205 relative to the corresponding arc-shaped curve base ranges from 0 to 2 mm (e.g., Figure 8 , Figure 9 As shown). The surgical blade 2 of this utility model has a maximum width of 2-5mm (e.g., Figure 8 As shown), the preferred width at its maximum is 4mm, and the maximum length of the surgical blade 2 is 20-25mm (as shown). Figure 10 As shown), the preferred length at the maximum point is 22.3 mm. The surgical blade 2 of this invention is an integrated structure manufactured using a metal powder injection molding process. The surgical blade 2 of this invention can be installed as the blade of a microwave surgical scalpel.

[0016] By setting the clockwise twist angle of the foremost edge portion 204 of the cutting end, and the overall upward tilt of the cutting end and the convexity of the first surface 201 and the second surface 202 on the arc base, the first and second surfaces of the surgical blade of this invention can fit more closely to the tissue being cut during the operation. Furthermore, the surgeon can simultaneously observe the position of the first and second surfaces of the surgical blade relative to the tissue being cut from any side of the surgical blade, greatly improving the cutting accuracy and surgical effect.

Claims

1. A surgical blade head comprising a cutting end, a coaxial cylindrical interface end, the cutting end comprising a first surface, a second surface, a forward-most edge portion; characterized by: The cut ends formed by the first and second surfaces are generally arc-shaped and upturned.

2. The scalpel blade of claim 1 wherein: Taking the cross-section of the coaxial cylindrical interface end as the observation plane, the foremost edge portion located at the cutting end has a torsion angle around the central axis of the coaxial cylindrical interface end in a clockwise direction, and the torsion angle range is 0-45 degrees.

3. The scalpel blade of claim 2 wherein: The foremost edge portion of the cutting end has an upward tilt of 0-3mm relative to the central axis of the coaxial cylindrical interface end.

4. The scalpel blade of claim 3 wherein: Both the first surface and the second surface are based on an arc-shaped curve, with a wave-shaped ridge at the center of the surface. The height of the ridge relative to the corresponding arc-shaped curve base is in the range of 0-2mm.

5. The scalpel blade of claim 2 wherein: The twist angle is 12 degrees.

6. The scalpel blade of claim 2 wherein: The maximum width of the surgical blade is 2-5mm, and the maximum length is 20-25mm.

7. The scalpel blade of claim 6 wherein: The maximum width of the surgical blade is 4mm, and the maximum length is 22.3mm.

8. A scalpel blade according to any one of claims 1 to 7 wherein: The foremost edge portion of the cutting end can be either a continuous curved cutting edge or a serrated cutting edge.

9. A scalpel blade according to any one of claims 1 to 7 wherein: The surgical blade head is an integral structure and is manufactured using a metal powder injection molding process.

10. A microwave scalpel, characterized by The microwave scalpel is equipped with a scalpel head as described in any one of claims 1 to 7.