Portable hand hemiplegia rehabilitation exercise assisting device

An auxiliary device and portable technology, applied in the field of medical devices, can solve the problems of indentation at the squeeze of the finger, complicated hand movement function, affecting the blood supply of the finger, etc., and achieves convenient operation, generally cheap constituent materials, and a wide range of people. Effect

Pending Publication Date: 2017-04-26
SHANGHAI TONGJI HOSPITAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, using the fingerboard for exercise also has the following deficiencies or defects: 1. When the patient wears the fingerboard, it is easy to cause indentation at the finger squeeze, which affects the blood supply of the finger; 2. The exercise direction of the fingerboard Just exercise along the direction of the palm plane, you can’t flex your fingers, and the exercise direction is relatively single; 3. The fingerboard cannot exercise the wrist joint, which is an important part of the rehabilitation exercise for hemiplegic patients
However, the gloves disclosed in the above-mentioned patent documents can only exercise the coarse part, and the rehabilitation effect is not good. However, the human hand has complex motor functions and fine movements, and rehabilitation exercises for the finger joints and wrist joints are required.
[0007] To sum up, there is an urgent need for an auxiliary device that can comprehensively and finely exercise the hand, has good compliance, can perform rehabilitation exercises anytime, anywhere, is easy to operate, and has good repeatability, but there is no report about this auxiliary device.

Method used

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  • Portable hand hemiplegia rehabilitation exercise assisting device
  • Portable hand hemiplegia rehabilitation exercise assisting device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Please refer to figure 1 , figure 1 It is a structural schematic diagram of a portable hand hemiplegia rehabilitation exercise aid invented. A portable hand hemiplegia rehabilitation exercise auxiliary device, the rehabilitation exercise auxiliary device includes a glove body 1, a fish scale semi-circular ring 2, a steel wire 3, a fixed strap 4, a pulling strip 5, and a pulling ring 6; the glove The body 1 is divided into fingers, palms, and wrists, and the fingers are independently separated; the steel wires 3 are arranged on the back of the glove body 1, and each steel wire 3 is sent from the distal end of each finger, along the back of the finger. Walking converges on the pulling strip 5 of the wrist joint of the glove body 1, and the other end of the pulling strip 5 is connected to the pulling ring 6; one end of the pulling strip 5 protrudes outward along the wrist joint of the glove body 1; The scale-shaped semi-circular ring 2 is distributed at the position wher...

Embodiment 2

[0041] Please refer to figure 2 , figure 2 It is a structural schematic diagram of another portable hand hemiplegia rehabilitation exercise aid of the present invention. This embodiment is basically the same as Embodiment 1. The difference is that the palm of the glove body 1 in this embodiment has a built-in palm rest. The palm rest has a supporting effect and maintains natural physiological functions. The palm rest can be made of sponge material. made.

[0042] A portable hand hemiplegia rehabilitation exercise auxiliary device of the present invention mainly drives the back of the glove to be stretched by pulling the steel wire 3, so as to achieve passive and active hand movement for rehabilitation exercise, and can exercise the hands comprehensively and finely, with good compliance and can Rehabilitation exercises can be performed anytime and anywhere, with easy operation and good repeatability. It can form a medical device product dedicated to hand rehabilitation, whi...

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Abstract

The present invention relates to a portable hand hemiplegia rehabilitation exercise assisting device. The portable hand hemiplegia rehabilitation exercise assisting device comprises a glove body, fish scale-shaped semicircle rings, steel wires, a fixing binding strap, a pulling bar and a pulling ring; the steel wires are arranged on the back of a glove body; each steel wire is led out from the distal end of each finger, extends along the back of the finger and converges at the pulling bar at the wrist joint of the glove body; one end of the pulling bar is connected with the pulling ring; the fish scale-shaped semicircle rings are distributed on portions at each finger joint, metacarpophalangeal joint and wrist joint where the steel wires pass through; and the fixing binding strap is fixed at the wrist of the glove body. According to the portable hand hemiplegia rehabilitation exercise assisting device of the invention, the steel wires are pulled so as to drive the back of the glove to stretch, so that the passive and active movement of a hand can be realized, rehabilitation exercise can be performed, and the hand can be exercised comprehensively and finely. With the portable hand hemiplegia rehabilitation exercise assisting device adopted, a user can do rehabilitation exercise anywhere at any time. The portable hand hemiplegia rehabilitation exercise assisting device can form a special medical product for hand rehabilitation and has a bright prospect in clinical promotion. The portable hand hemiplegia rehabilitation exercise assisting device has the advantages of excellent compliance, convenient operation and high repeatability.

Description

technical field [0001] The invention relates to the technical field of medical equipment, in particular to a portable hand hemiplegia rehabilitation exercise auxiliary device. Background technique [0002] Stroke is currently one of the major diseases that seriously endanger human health, and its incidence is still rising year by year. There are as many as 5 million to 7 million stroke patients in my country, which has caused a huge burden on limited health resources. Upper limb and hand dysfunction after stroke is one of the most common sequelae. About 30% of patients after stroke have upper limb spasticity, which may lead to deformity, reduced function and pain. The motor functions of the upper limbs and hands are complex and the movements are fine. Rehabilitation of upper limbs and hand dysfunction after stroke has always been a difficult point. [0003] The exercise for the hands of hemiplegic patients is usually done manually, that is, it is necessary to hold the patie...

Claims

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Application Information

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IPC IPC(8): A61H1/02
CPCA61H1/0218A61H1/0285A61H1/0288
Inventor靳令经刘务朝
OwnerSHANGHAI TONGJI HOSPITAL