Supplementary motion system and control method thereof

An exercise system and movement technology, applied in sports accessories, passive exercise equipment, muscle training equipment, etc., can solve problems such as inability to provide active force for patients, little help for patients to restore their ability to restore daily life, stimulation, etc., and achieve stimulating achievements. The effect of feeling and using interest, reducing mental burden, and enhancing stability

Active Publication Date: 2010-11-03
SHENZHEN INST OF ADVANCED TECH CHINESE ACAD OF SCI
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  • Application Information

AI Technical Summary

Problems solved by technology

At present, most auxiliary motion systems cannot provide active force to patients during training, but only provide resistance or support, which makes it easy for patients to completely rely on robots to complete actions, which may lead to abnormal movement patterns of paralyzed limbs
[0004] There are also some auxiliary motion systems that can provide active force during training to help patients complete certain movements, but the system involves relatively simple and cannot meet the training requirements of clinical patients for different functional states
That is, the training work that the auxiliary movement system can provide is only a simpl

Method used

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  • Supplementary motion system and control method thereof
  • Supplementary motion system and control method thereof
  • Supplementary motion system and control method thereof

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Embodiment Construction

[0022] Such as figure 1 As shown, an auxiliary motion system includes a data acquisition unit 10, a signal processing unit 20, a motor driver 30 and a mechanical actuator 40, wherein:

[0023] The data collection unit 10 is used for collecting myoelectric signals of multiple parts of the body. In this embodiment, the data acquisition unit 10 includes a surface electrode 101, a multi-channel preamplifier 102, and an analog-to-digital converter 103. The surface electrode 101 is attached to the muscle surface of multiple parts of the limb, usually attached to the muscle surface of the limb. On multiple joints, the number and position of electrodes are also different according to the degree of limb paralysis and the expected recovery of motion data. Generally, 3 to 12 surface electrodes 101 can be provided, which are respectively attached to the muscle surfaces of the shoulder, upper arm, forearm and hand. The surface electrode 101 collects the myoelectric signal of each part, a...

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Abstract

The invention provides a supplementary motion system and a control method thereof. The system comprises a data acquisition unit, a signal processing signal, a motor driver and a mechanical actuating mechanism, wherein the data acquisition unit is used for acquiring electromyographic signals of a plurality of parts of limbs; the signal processing unit is used for respectively extracting time-domain characteristics and frequency characteristics of the electromyographic signal of each part and training and identifying multi-joint coordinated action types of the limbs by adopting a parallel mode classification algorithm; the motor driver is used for driving the mechanical actuating mechanism to actuate according to the action types; and the mechanical actuating mechanism is used for assisting the limbs to finish the corresponding actions under the drive of the motor driver. By adopting the system and the control method thereof, a user can select a training mode by setting a mechanism actuating structure as active training or passive training; and the system can automatically sense the action intention of the user, coordinate the user to finish training needs with different strengths and speeds, and improve the motion function rehabilitation effect.

Description

【Technical field】 [0001] The invention relates to rehabilitation medical device technology, in particular to an auxiliary motion system and a control method thereof. 【Background technique】 [0002] According to the statistics of the Ministry of Health, there are more than 2 million new cases of cerebral apoplexy (or cerebral apoplexy) in my country every year, and the cumulative number of surviving cerebral apoplexy patients has reached 6 to 7 million, of which 3 / 4 patients will leave different degrees of physical damage disabled. However, the incidence of stroke in my country is developing rapidly with an annual increase rate of 2% to 3%, which is much higher than the annual increase rate of 1.7% in the world. After the acute phase, stroke patients often have various dysfunctions, including motor dysfunction, aphasia, cognitive impairment, swallowing disorder, etc. Among them, partial or complete loss of limb motor function is the most serious sequelae of stroke. According...

Claims

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Application Information

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IPC IPC(8): A61H1/02A63B21/005
Inventor 李光林耿艳娟
Owner SHENZHEN INST OF ADVANCED TECH CHINESE ACAD OF SCI
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