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FES-controlled co-contraction strategies for pathological tremor compensation

机译:FES控制的共收缩策略,用于病理性震颤补偿

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In this paper, a strategy for pathological tremor compensation based on co-contraction of antagonist muscles induced by Functional Electrical Stimulation (FES) is presented. Although one of the simplest alternatives to apply FES for reducing the effects of tremor, the contribution of different co- contraction levels for joint motion and impedance must be accurately estimated, specially since tremor itself is highly time-varying. In this work, a detailed musculoskeletalmodel of the human wrist actuated by flexor and extensor muscles is used for this purpose. The model takes into account different properties that affect muscle dynamics, such as proprioceptive feed- back and combined natural and artificial activation. The model, analysis of stiffness modulation due to FES-controlled co-contraction and simulation results are presented in the paper.
机译:本文提出了一种基于功能性电刺激(FES)诱导的拮抗肌共收缩的病理性震颤补偿策略。尽管应用FES来减少震颤的最简单的替代方法之一,但是必须准确估计不同收缩水平对关节运动和阻抗的贡献,特别是因为震颤本身是随时间变化的。在这项工作中,为此目的使用了由屈肌和伸肌致动的人手腕的详细肌肉骨骼模型。该模型考虑了影响肌肉动力学的不同属性,例如本体感受反馈以及自然和人工激活相结合。本文介绍了该模型,由于FES控制的共收缩引起的刚度调制分析以及仿真结果。

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