Surgical healing device

A healer and surgical technology, applied in the field of medical devices, can solve the problems of small healing tension, no elasticity, bagging, etc., and achieve the effect of avoiding degumming and relative shearing

Inactive Publication Date: 2016-04-13
BEIJING MED ZENITH MEDICAL SCI CORP LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Divided from the perspective of product launch time and product maturity and reliability, incision valgus healing devices can be roughly divided into three generations of products. Seam zipper, this type of product can quickly achieve non-invasive healing of the incision, and has high operating efficiency, but has limited valgus effect on the incision, provides little healing tension, and has almost no elasticity, especially the longitudinal contraction is limited, and tissue activities can lead to degumming , bagging, affecting tissue healing; due to the limitations of its structure, its range of use is affected, this type of product is only suitable for the closure of incisions with a straight line or a curvature of no more than 20 degrees on various parts of the body surface or suitable for incisions with different curvatures. Closure of an incision exceeding 20 degrees
The second-generation product is represented by the medical suture pull buckle produced by Beijing Sunshine Yikang Technology Development Co., Ltd., which is composed of a single lock buckle, which can be freely stretched in the longitudinal direction. Limited to the shape of the notch, it is not necessary to be limited by the curvature of the notch, but because it is a single pull button, the operation efficiency is low; another disadvantage is that because there is no connection between the single pull buttons, when one side of the notch is displaced, the pull The buckle cannot effectively balance the displacement, that is to say, it cannot effectively decompose the shear force between the incisions, and cannot fully protect the incisions

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0074] figure 1 It is a general assembly drawing of a surgical healing device according to an embodiment of the present invention. The surgical healing device includes: a left base 1a and a right base 1b juxtaposed, with air holes h on each base, the purpose of which is to increase air permeability, and the material of the base is Elastic material, such as TPU or rubber, the thickness of the base is about 0.3mm; the sticky films fixed on one side of the left base 1a and the right base 1b are respectively used in this embodiment to be coated with bio The double-sided adhesive composite film that the base material of medical glue forms; The left stress controller 2a that is positioned at the other side of described left base; The right stress controller 2b that is positioned at the other side of described right base; The buckle 2a1 on the controller 2a; the lock 2b1 located on the right stress controller 2b; one end is fastened on the buckle and the other end can move in one dir...

Embodiment 2

[0089] Figure 14 Another example is given. The main difference between it and Embodiment 1 is that the structure of each stress controller is double C-shaped. Label 22 is the internal stress controller, 23 is the external stress controller, 15 is the left base, 16 is the right base, 17 is the buckle, 18 is the backing tooth of the tie bar, 19 is the tie bar, 20 is the pull ring of the tie bar, 21 For the lock.

Embodiment 3

[0091] Figure 15 and Figure 16 Yet another example is given. The main difference between it and Embodiment 1 is that each base is a fishbone-shaped structure, wherein the reference numeral 24 is a fishbone-shaped structure, and the reference numeral 25 is a base hole as a vent hole.

[0092] Wherein the left stress controller and the right pressure controller are fishbone-shaped structures, and the label 26 is a right base, 27 is a lock, 28 is a pull bar, and 29 is a buckle.

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PUM

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Abstract

The invention discloses a surgical healing device which comprises a left base, a right base, adhesion membranes, a left stress controller, a right stress controller, a clamping buckle, a lock catch and a stay, wherein the left base and the right base are arranged side by side; the adhesion membranes are arranged on one side of the left base and one side of the right base respectively; the left stress controller is located on the other side of the left base; the right stress controller is located on the other side of the right base; the clamping buckle is located on the left stress controller; the lock catch is located on the right stress controller; one end of the stay is fixedly clamped to the clamping buckle, and the other end of the stay can move along the locking catch in a one-way mode so that the clamping buckle and the lock catch can be pulled to be close to each other.

Description

technical field [0001] The present invention relates to a medical device, more specifically to a surgical healing device. Background technique [0002] The traditional incision healing methods are suture suture or skin stapler suture, both of which are invasive sutures, which are prone to scarring and infection, and the efficiency of suture suture is low, which increases the labor intensity of the operator. The valgus healing of the incision is a new type of healing method recently. The biggest advantage is that the scar after the incision is healed is small, beautiful, and the infection rate is low. Divided from the perspective of product launch time and product maturity and reliability, incision valgus healing devices can be roughly divided into three generations of products. Seam zipper, this type of product can quickly achieve non-invasive healing of the incision, and has high operating efficiency, but has limited valgus effect on the incision, provides little healing t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B17/08
CPCA61B17/08A61B17/085A61B17/00491
Inventor 周晓军林子凯窦圣博可大年孟坚
Owner BEIJING MED ZENITH MEDICAL SCI CORP LTD
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