Parkinson patient walking ability evaluation method based on gait time-space parameters and three-dimensional force characteristics
A technology of spatio-temporal parameters and three-dimensional force, applied in the direction of electrical digital data processing, special data processing applications, instruments, etc., can solve problems such as differences in gait disorder assessment, inaccurate parameter extraction, and low calculation accuracy of parameters to achieve comprehensive information, Good scalability and low implementation difficulty
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[0039]Embodiment 1: The present invention is based on the gait information of Parkinson's patients, with the purpose of extracting the characteristic parameters of the patient's gait and evaluating the normal walking ability of the patient, and proposes a Parkinson's patient based on gait spatiotemporal parameters and three-dimensional force characteristics Walking ability evaluation method, the method is characterized in that: use the flexible array pressure sensor and the gait channel constructed by the three-dimensional force test platform to obtain the plantar pressure data and three-dimensional force data in the normal walking process of Parkinson's patients; The bottom pressure data and three-dimensional force data are analyzed and processed to extract the gait space-time parameters and three-dimensional force characteristic parameters; finally, the fuzzy algorithm is used to classify the gait space-time parameters and three-dimensional force characteristic parameters, so ...
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