首页> 外文会议>32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Interleaved multichannel epimysial stimulation for eliciting smooth contraction of muscle with reduced fatigue
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Interleaved multichannel epimysial stimulation for eliciting smooth contraction of muscle with reduced fatigue

机译:交错式多通道上皮肌刺激可引起肌肉平滑收缩,减少疲劳

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Functional electrical stimulation (FES) refers to the method by which sensory or motor functionality is restored through the use of coordinated stimulation of tissue. Our group has developed a mechanically conformable multielectrode array (cMEA) that can stimulate and record from the surface of muscles with high fidelity and low invasiveness, making the device well suited for various FES applications. The research presented here investigates the feasibility of using a cMEA to deliver asynchronous spatiotemporal stimulation patterns epimysially (on the surface of muscles). Specifically, we employ an interleaved stimulation protocol to achieve force responses with less fatigue and less ripple than those produced by standard simultaneous stimulation protocols delivered at high and low frequencies, respectively. This experimentation demonstrates that asynchronous spatiotemporal stimulation protocols delivered epimysially via a cMEA can improve the characteristics of the resulting force profiles.
机译:功能性电刺激(FES)是指通过使用组织的协调刺激来恢复感觉或运动功能的方法。我们的小组开发了一种机械适应性多电极阵列(cMEA),可以高保真度和低侵入性刺激并记录肌肉表面,使该设备非常适合各种FES应用。此处进行的研究调查了使用cMEA在肌外表面(在肌肉表面)传递异步时空刺激模式的可行性。具体而言,与采用分别以高频和低频传递的标准同时刺激方案产生的力响应相比,我们采用了交错刺激方案以实现更少的疲劳和更少的波纹力响应。该实验表明,通过cMEA面外传递的异步时空刺激方案可以改善所得力分布的特征。

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