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Influence of volitional contraction on muscle response to functional electrical stimulation

机译:显着收缩对功能电刺激肌肉反应的影响

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This paper focuses on the volitional contraction's impact on Functional Electrical Stimulation (FES). Hammerstein model, which combines static nonlinearity, isometric response curve (IRC), and dynamical linearity, is a common model to present the muscle response to electrical stimulation. We utilized the responses to a pseudo-random binary sequence (PRBS) excitation to identify the static nonlinearity. Then, ramp deconvolution method was used to obtain the dynamical linearity in different volitional contraction levels. Five able-bodied subjects' flexor carpi ulnaris in isometric contraction were tested. Finally, we find normalized dynamical linearity nearly remains unchanged as the volitional contraction changes. And the dead zone and saturation zone of IRC increases accompanying the bigger volitional contraction, while the linearity zone decreases. So, it is suitable to reduce the adjustable electrical stimulation intensity's scope.
机译:本文重点介绍了同志收缩对功能电刺激(FES)的影响。 将静态非线性,等距响应曲线(IRC)和动态线性相结合的Hammerstein模型是呈现对电刺激的肌肉响应的常见模型。 我们利用对伪随机二进制序列(PRB)激励的响应来识别静态非线性。 然后,使用斜坡去卷积法在不同的激动收缩水平中获得动态线性。 测试了在等距收缩中的五个能够体验的受试者的屈肌Carpi ulnaris。 最后,我们发现正常化的动态线性几乎保持不变随着激动收缩变化而保持不变。 而IRC的死区和饱和区随着更大的加速收缩而增加,而线性区降低。 因此,它适合降低可调节的电刺激强度的范围。

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