首页> 外文会议>International IEEE/EMBS Conference on Neural Engineering >Interferential Current Stimulation for Non-Invasive Somatotopic Sensory Feedback for Upper-Limb Prosthesis: Simulation Results using a Computable Human Phantom
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Interferential Current Stimulation for Non-Invasive Somatotopic Sensory Feedback for Upper-Limb Prosthesis: Simulation Results using a Computable Human Phantom

机译:对肢体假体的非侵入性躯体感觉反馈的干扰电流刺激:使用可计算人类幻影的仿真结果

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The addition of sensory feedback to upper-limb prostheses has been shown to improve several aspects of the user experience. In an attempt to create an intuitive sensory feedback method, transcutaneous electrical stimulation of the stump has been used to elicit referred sensation in the phantom hand by stimulating the underlying nerves. However, the sensation at the electrodes is always reported due to the stimulation of mechanoreceptors. This work investigates the use of interferential stimulation (the superposition of two kilohertz-frequency stimulation currents to form a low-frequency envelope stimulation waveform) to produce focused and selective stimulation that reduces the sensation at the electrodes. A computable human arm phantom model was used to analyse the electric fields created by interferential stimulation against those created by low-frequency stimulation. The results support the assumption that interferential stimulation could result in reduced sensation at the electrode. However, they did not show benefits in terms of penetration at the frequency range considered. In fact, the results suggest that slightly higher currents may be required.
机译:已经示出了向上肢假肢添加感觉反馈,以改善用户体验的若干方面。在尝试创建直观的感觉反馈方法,树桩的经皮电刺激已经通过刺激潜在的神经来引发幻象手中的引用感觉。然而,由于刺激机械感光体,始终报告电极的感觉。这项工作调查了使用干扰刺激(两个千赫兹频率刺激电流的叠加,形成低频包络刺激波形),以产生聚焦和选择性刺激,从而降低电极处的感觉。可计算的人臂幻影模型用于分析通过对低频刺激产生的那些通过干扰刺激产生的电场。结果支持假设干扰刺激可能导致电极的感觉降低。然而,它们在考虑的频率范围内没有显示出渗透性的好处。事实上,结果表明可能需要略高的电流。

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