Intended gait speed prediction via swing limb kinematics applicable for patients with slow gait

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초록

Accurate prediction of intended gait speed is crucial for facilitating volitional muscle activity during robot-assisted gait training. Considering that most patients find it difficult to perform gait at relatively high speeds, it is also imperative that the prediction model performs well at slow gait speed. Furthermore, ample time for signal processing should be given prior to robot assistance such that the patient is not subjected to unwanted resistance or lag. Here, the authors propose to predict the intended speed of the contralateral limb via kinematics of the current swing limb. Three lower-limb positions were evaluated using an inertial measurement unit sensor during treadmill gait sessions. The results suggest that the authors' model performs well even during slow gait speeds (<= 2 km/h) with R-2 values as high as 0.86.

키워드

medical roboticskinematicssensorsgait analysiselectromyographymedical signal processingintended gait speed predictionswing limb kinematicsvolitional muscle activityrobot-assisted gait trainingprediction modelslow gait speedrobot assistancecontralateral limbcurrent swing limblower-limb positionstreadmill gait sessionssignal processinginertial measurement unit sensorEMGTREADMILL WALKINGSTROKE
제목
Intended gait speed prediction via swing limb kinematics applicable for patients with slow gait
저자
Kim, J.Kim, Y.Lee, J. M.Kim, S. -J.
DOI
10.1049/el.2020.1245
발행일
2020-09-03
유형
Article
저널명
Electronics Letters
56
18
페이지
911 ~ 913