Method for rehabilitation of patient with musculoskeletal disease by using power exoskeleton
An exoskeleton and power technology, applied in the field of muscle disease management, can solve problems such as difficulty in accurately analyzing the user's skeletal condition, and achieve the effect of ensuring stable implementation.
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Embodiment 1
[0029] An embodiment of the present invention provides a rehabilitation method for patients with musculoskeletal diseases using a powered exoskeleton, which includes the following steps: the method for evaluating the comprehensive rehabilitation effect of the disabled is to measure and summarize indicators at the beginning and end of the rehabilitation course, which takes into account Three groups of indicators, respectively representing the functional state of the body with 5 parameters: cognitive function, muscle tension, muscle strength, pain severity, excretory function; activities in the 5 parameters: wrist ability, physical fitness, mobility, self Service level, productivity at home; participation in 4 parameters: communication skills, leisure, socialization, occupational fitness,
[0030] Sp1: The following signs were measured for the study: the maximum number of times the patient was able to stand up from a high chair;
[0031] The minimum height at which the patient c...
Embodiment 2
[0041] An embodiment of the present invention provides a rehabilitation method for patients with musculoskeletal diseases using a powered exoskeleton. The severity of disability (VOJ) is calculated according to the formula VOJ=100-(RP1 / MRP·100) (%). where RP1 is the sum of points from the pre-rehabilitation measurements and MRP is the maximum recovery potential, the highest score when assessing function, activity, and participation. A VOJ ratio of 10-24% is judged as mildly disabled; a VOJ value of 25-49% is judged as moderately disabled; a VOJ value of 50-74% is judged as severely disabled; a VOJ value of 75-100% is judged as very severe, so The rehabilitation effect is calculated according to the formula ER=(RP2-RP1) / MRP·100(%). where RP1 is the sum of the pre-rehabilitation measurements, RP2 is the sum of the post-rehabilitation measurements, MRP is the maximum rehabilitation potential, the maximum number of points when assessing function, activity and participation, said a...
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