Exoskeleton type five-finger-arc-displacement finger rehabilitation training system

A five-finger arc and exoskeleton technology, used in passive exercise equipment, physical therapy and other directions, can solve the problems of neglecting five-finger coordination rehabilitation training, lack of rehabilitation exercise, and unfavorable hand full recovery, so as to facilitate rehabilitation training and prevent secondary Effects of damage, precise position control

Active Publication Date: 2017-08-01
NANJING UNIV OF POSTS & TELECOMM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For example, the invention of patent No. 201310146905.5 proposes a "wearable hand function rehabilitation training manipulator", which can only provide the entire flexion and extension of fingers, lacks rehabilitation exercises for multiple joints of each finger, and ignores rehabilitation training for five-finger coordination , is not conducive to the overall recovery of the hand

Method used

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  • Exoskeleton type five-finger-arc-displacement finger rehabilitation training system
  • Exoskeleton type five-finger-arc-displacement finger rehabilitation training system
  • Exoskeleton type five-finger-arc-displacement finger rehabilitation training system

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Experimental program
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Effect test

Embodiment

[0025] Embodiment An exoskeleton-type five-finger arc displacement finger rehabilitation training system is used for the patient's finger rehabilitation training. It is driven by a linear push rod motor and cooperates with the far-end connecting rod assembly of the finger to realize the flexion and extension of the two joints of the finger, which is convenient Comprehensive rehabilitation of the patient's fingers.

[0026] Example

[0027] Such as figure 1 , an exoskeleton-type five-finger arc displacement finger rehabilitation training system, including a manipulator fixing plate 1, the lower side arc surface structure of the manipulator fixing plate 1 is used to adapt to the structure of the human hand, fixed on the hand by a bandage, and the upper side plane is used to fix the manipulator The drive system and finger mechanism5.

[0028] Specifically, such as figure 1 , the manipulator drive system adopts five sets of linear push rod motors 3, the front ends of the linear...

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Abstract

The invention provides an exoskeleton type five-finger-arc-displacement finger rehabilitation training system. The system comprises a mechanical arm fixing plate fixed on the back of a hand and is characterized in that the mechanical arm fixing plate comprises a mechanical arm drive system and finger mechanisms, the mechanical arm drive system comprises linear push rod motors, rotatable motor bases and linear push rods connected with the linear push rod motors, and each finger mechanism comprises a finger near-end arc-shaped support with a slide groove, an arc-shaped push rod, a finger fixing seat, a finger far-end arc-shaped support and a finger far-end connecting rod component; slide wheel groups are mounted on the lateral sides of the arc-shaped push rods to allow the arc-shaped push rods to slide in the slide grooves of the arc-shaped support so as to convert the linear displacement of the motors into finger near-end arc displacement; the finger far-end connecting rod components are used for achieving finger tail-end arc displacement. The exoskeleton type five-finger-arc-displacement finger rehabilitation training system has the advantages that the two-freedom-degree rehabilitation exercise of each finger, the active or passive rehabilitation training of the fingers can be achieved by controlling the motors, and the system is ingenious and safe in structure, convenient to operate and capable of greatly relieving the work intensity of medical staff.

Description

technical field [0001] The invention relates to an exoskeleton type five-finger arc displacement finger rehabilitation training system, which belongs to the field of rehabilitation medical equipment. Background technique [0002] With the advancement of science and technology, especially the rapid development of medicine, rehabilitation medical engineering has been paid more and more attention. Rehabilitation medicine research shows that for patients with limb dysfunction caused by stroke, spinal cord injury and various accidents, if timely and correct rehabilitation training can be performed, it will be of great help to the recovery of neuromuscular function. It is very important to the family. In view of some deficiencies in the current rehabilitation treatment methods, the frequent and repetitive work of rehabilitation training is more suitable for robot-assisted completion. The birth of rehabilitation robots has brought good news to patients. Use robots and related tec...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61H1/02
Inventor 姬翔高翔陈盛徐国政冯琳琳汪超
Owner NANJING UNIV OF POSTS & TELECOMM
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