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Analysis of muscle activation patterns during walking in patients with foot drop: insights for the design of an advanced FES controller

机译:脚下垂患者行走过程中的肌肉激活模式分析:高级FES控制器设计的见解

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This study focuses on the analysis of human walking after stroke for the design of a Functional Electrical Stimulation (FES) strategy for foot drop correction. Our approach is based on the analysis of muscle activation patterns from electromyography and ankle joint kinematic data. The objective of this work was to study the activation of the muscles of the lower leg during walking in three different walking speeds in patients affected by stroke with a foot drop syndrome. The purpose was to find any differences in muscle activation duration and intensity that should be taken into account in the definition of the muscle stimulation patterns of an FES foot drop controller. The results showed that plantar flexor muscles should also be included in our FES controller, especially at the end of the stance phase. The results confirmed a clear relation between walking speed and muscle activation. A novel concept design of an FES foot drop controller is proposed, with inputs as the walking speed of the subject and instantaneous gait phase extracted from inertial measurement units.
机译:这项研究的重点是分析人的中风后步行,以设计功能性电刺激(FES)策略来矫正脚底。我们的方法是基于肌电图和踝关节运动学数据对肌肉激活模式的分析。这项工作的目的是研究患有脚下垂综合征的中风患者以三种不同的行走速度行走时小腿肌肉的激活。目的是找到在定义FES脚踏控制器的肌肉刺激模式时应考虑的肌肉激活持续时间和强度的任何差异。结果表明,足底屈肌也应包括在我们的FES控制器中,尤其是在站立阶段结束时。结果证实了步行速度和肌肉激活之间的明确关系。提出了一种FES脚踏控制器的新颖概念设计,其输入是对象的行走速度以及从惯性测量单元提取的瞬时步态相位。

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