Intelligent protective device for thorax-abdomen surgical incision and using method of intelligent protective device

A surgical incision and protection device technology, applied in the field of medical devices, can solve the problems of cumbersome bandage winding, functional obstacles, and poor blood circulation, and achieve the effects of simple use, convenient replacement, and reduced labor intensity

Inactive Publication Date: 2017-11-24
韩巨山 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The incision after thoracoabdominal surgery needs to be bound with a bandage during recovery to facilitate the healing of the wound. As we all know, traditional bandages are rolled in rolls and need to be bypassed again and again when used. In addition, bandages are Wrapping is very cumbersome. In most cases, multiple people are required to cooperate. One person is used to fix the cotton wool, and the other person is used to bandage. In addition, the bandage is mainly used to tighten the bandage. If the bandage is too tight, it will lead to poor blood circulation. , leading to local functional impairment, if the dressing is too loose, it will not be able to bind

Method used

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  • Intelligent protective device for thorax-abdomen surgical incision and using method of intelligent protective device
  • Intelligent protective device for thorax-abdomen surgical incision and using method of intelligent protective device
  • Intelligent protective device for thorax-abdomen surgical incision and using method of intelligent protective device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] Example 1, such as Figure 1-3 , an intelligent incision protection device for thoracoabdominal surgery, comprising a bandage outer layer 2, an inner layer bandage 1, the bandage outer layer 2 is wrapped outside the inner layer bandage 1, and the inner surface of the bandage outer layer is made of a sliding material to reduce the speed of rotation of the inner layer bandage frictional resistance; one end of the inner bandage 1 is provided with a socket 4, a power supply 5, a microcontroller 12 and an upper bandage adjustment device; Cooperate with fastening to form a bandage ring; the upper bandage adjustment device and the lower bandage adjustment device are respectively connected with the upper segment of the inner layer bandage 1 and the lower segment of the inner layer bandage 1, and the upper and lower segment edges of the middle part of the inner layer bandage 1 are provided with pressure sensors 9 and muscles. The electric sensor 8, the pressure sensor 9 and the ...

Embodiment 2

[0043] Example 2, such as Figure 1-3, an intelligent incision protection device for thoracoabdominal surgery, comprising a bandage outer layer 2, an inner layer bandage 1, the bandage outer layer 2 is wrapped outside the inner layer bandage 1, and the inner surface of the bandage outer layer is made of a sliding material to reduce the speed of rotation of the inner layer bandage frictional resistance; one end of the inner bandage 1 is provided with a socket 4, a power supply 5, a microcontroller 12 and an upper bandage adjustment device; Cooperate with fastening to form a bandage ring; the upper bandage adjustment device and the lower bandage adjustment device are respectively connected with the upper segment of the inner layer bandage 1 and the lower segment of the inner layer bandage 1, and the upper and lower segment edges of the middle part of the inner layer bandage 1 are provided with pressure sensors 9 and muscles. The electric sensor 8, the pressure sensor 9 and the m...

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PUM

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Abstract

The invention discloses an intelligent protective device for a thorax-abdomen surgical incision. The intelligent protective device comprises a bandage outer covering layer and an inner layer bandage, the bandage outer covering layer is wrapped outside the inner layer bandage, and a socket, a power supply, a microcontroller and an upper section bandage adjusting device are arranged at one end of the inner layer bandage; a plug and a lower section bandage adjusting device are arranged at the other end of the inner layer bandage, and the plug is matched and buckled with the socket to form a bandage ring; a pressure sensor and a myoelectrical sensor are arranged at the upper section edge and the lower section edge of the middle of the inner layer bandage; the microcontroller is electrically connected with the upper section bandage adjusting device, the lower section bandage adjusting device, the myoelectrical sensor and the pressure sensor; and the invention further discloses a using method of the intelligent protective device. The intelligent protective device for the thorax-abdomen surgical incision is simple and convenient to use in the binding process, can intelligently adjust the tightness of the surgical incision bound by the bandage, and the labor intensity of medical workers is relieved.

Description

technical field [0001] The invention belongs to the technical field of medical devices, and in particular relates to an intelligent incision protection device for thoracoabdominal surgery and a usage method thereof. Background technique [0002] The incision after thoracoabdominal surgery needs to be bound with a bandage during recovery to facilitate the healing of the wound. As we all know, traditional bandages are rolled in rolls and need to be bypassed again and again when used. In addition, bandages are Wrapping is very cumbersome. In most cases, multiple people are required to cooperate. One person is used to fix the cotton wool, and the other person is used to bandage. In addition, the bandage is mainly used to tighten the bandage. If the bandage is too tight, it will lead to poor blood circulation. , leading to local functional impairment, if the dressing is too loose, it will not be able to bind. Contents of the invention [0003] In order to solve the above probl...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61F13/00A61B5/0488A61B5/00
CPCA61B5/6843A61F13/00051A61F2013/00089A61B5/389
Inventor 于建勇韩巨山
Owner 韩巨山
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