Upper limb stabilizer and radial artery compression assembly

A technology of compression components and stabilizers, which is applied in the field of medical devices, can solve problems such as the inability to prevent and treat upper limb swelling, and achieve the effects of preventing upper limb hematoma, reducing swelling and increasing stability

Pending Publication Date: 2022-07-22
苗润静
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to provide an upper limb stabilizer and radial artery compression assembly, which solves the technical problem that radial artery compressors in the prior art cannot prevent and treat upper limb swelling caused by radial artery puncture

Method used

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  • Upper limb stabilizer and radial artery compression assembly
  • Upper limb stabilizer and radial artery compression assembly
  • Upper limb stabilizer and radial artery compression assembly

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] refer to Figure 1-5 , the present invention provided by this embodiment provides an upper limb stabilizer, which at least includes a first pressure device 1, a second pressure device 2 and a cooling member 3 arranged in parallel, and the cooling member 3 is arranged on the first pressure device 1. Between it and the second pressing device 2, it is used to prevent and treat the swelling of the upper limb to reduce swelling. When the present invention is worn on the upper limb of the human body, both the first pressing device 1 and the second pressing device 2 can be pressed. At the position of the brachial artery 4 of the upper limb, set in this way, the present invention performs targeted pressurization at the position of the brachial artery 4, and when the radial artery 13 approach is punctured, by adding a compression point at the position of the brachial artery 4, the Greatly reduces the risk of upper extremity hemorrhage and increases the stability of the system. W...

Embodiment 2

[0033] refer to Figure 2-5 On the basis of Embodiment 1, this embodiment further defines the structures of the first pressing member 1 and the second pressing member 2 . In this embodiment, the upper limb stabilizer at least includes a first pressing member 1 , a second pressing member 2 and a cooling member 3 arranged in parallel, and the cooling member 3 is arranged between the first pressing member 1 and the second pressing member 2 During this time, both the first pressing device 1 and the second pressing device 2 can be pressed at the position of the brachial artery 4 of the upper limb, wherein the first pressing device 1 and the second pressing device 2 both include a bracket 5, which is arranged through The knob 6 on the bracket 5 and the connecting strips 7 arranged on both sides of the bracket 5 are slidably locked with the bracket 5 and the lower end of the knob 6 extends through the lower part of the bracket 5 to abut against the corresponding position of the upper...

Embodiment 3

[0037] refer to Figure 2-5 , On the basis of Embodiment 2, this embodiment further defines the structure of the cooling member 3 . In this embodiment, the upper limb stabilizer at least includes a first pressing member 1 , a second pressing member 2 and a cooling member 3 arranged in parallel, and the cooling member 3 is arranged between the first pressing member 1 and the second pressing member 2 In the meantime, both the first pressing device 1 and the second pressing device 2 can be pressed on the brachial artery 4 of the upper limb. The knob 6 on the 5 and the connecting straps 7 arranged on both sides of the bracket 5, the knob 6 is slidably locked with the bracket 5, and the lower end of the knob 6 extends through the lower part of the bracket 5 to abut and press the position corresponding to the upper limb. , wherein the cooling member 3 includes a bag body 10 and a cooling material 11 filled in the bag body 10, the bag body 10 is extended to the lower part of the fir...

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Abstract

The invention provides an upper limb stabilizer and a radial artery compression assembly, relates to the technical field of medical instruments, and solves the technical problem that in the prior art, a radial artery compressor cannot prevent and treat upper limb swelling caused by radial artery approach puncture. The upper limb stabilizer at least comprises a first pressing piece, a second pressing piece and a cooling piece which are arranged in parallel, the cooling piece is arranged between the first pressing piece and the second pressing piece, and the first pressing piece and the second pressing piece can be pressed at the brachial artery position of an upper limb. The upper limb bleeding risk can be greatly reduced and the stability of the system can be improved by performing targeted compression on the brachial artery, and when the compression point of the radial artery fails, the first compression piece and the second compression piece at the brachial artery can effectively and temporarily reinforce compression on the upper limb vein path, so that the occurrence of upper limb hematoma can be greatly prevented; the cooling piece is additionally arranged between the second pressing piece and the second pressing piece, so that the hematoma range of the upper limbs can be remarkably prevented and reduced.

Description

technical field [0001] The invention relates to the technical field of medical devices, in particular to an upper limb stabilizer and a radial artery compression assembly. Background technique [0002] Coronary atherosclerotic heart disease (hereinafter referred to as coronary heart disease) is an important disease affecting human health, and percutaneous coronary intervention (PCI, percutaneous coronary intervention) is currently one of the important treatments for coronary heart disease. The principle of percutaneous coronary intervention is to puncture the peripheral artery (radial artery of the hand or the femoral artery of the thigh), insert an arterial sheath, and then send an angiographic guide wire through the sheath, and then connect the coronary artery through the angiographic guide wire. The guiding catheter is sent to the opening of the coronary artery. After the catheter is in place, the guiding wire for treatment is sent to the distal end of the blood vessel th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B17/12A61F7/10
CPCA61B17/12A61F7/10A61B2017/12004A61F2007/0029
Inventor 南京
Owner 苗润静
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