Luke Osborn, Matthew Fifer, Courtney Moran, Joseph Betthauser, Robert Armiger, Rahul Kaliki, Nitish Thakor
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引用次数: 0
摘要
在这项工作中,我们研究了使用非侵入性、有针对性的经皮神经电刺激(TENS)为两名截肢者提供感觉反馈,其中一名截肢者接受了有针对性的感觉再支配(TSR),另一名截肢者没有接受TSR。开发闭环假肢的一个重要步骤是为截肢者提供触觉反馈。我们研究了靶向神经刺激幅度、脉宽和频率对刺激感知的影响。我们发现,两名受试者都能可靠地检测到脉冲小于 1 毫秒的刺激模式。我们利用心理物理结果,通过假手上的力传感器,在抓握任务中使用漏整合和发射(LIF)神经元模型生成了特定受试者的刺激模式。我们首次展示了 TENS 能够在 TSR 和非 TSR 截肢者的多个部位提供分级感觉反馈,同时利用行为结果调整由假手的力传感器输出驱动的神经形态刺激模式。
Targeted Transcutaneous Electrical Nerve Stimulation for Phantom Limb Sensory Feedback.
In this work, we investigated the use of noninvasive, targeted transcutaneous electrical nerve stimulation (TENS) of peripheral nerves to provide sensory feedback to two amputees, one with targeted sensory reinnervation (TSR) and one without TSR. A major step in developing a closed-loop prosthesis is providing the sense of touch back to the amputee user. We investigated the effect of targeted nerve stimulation amplitude, pulse width, and frequency on stimulation perception. We discovered that both subjects were able to reliably detect stimulation patterns with pulses less than 1 ms. We utilized the psychophysical results to produce a subject specific stimulation pattern using a leaky integrate and fire (LIF) neuron model from force sensors on a prosthetic hand during a grasping task. For the first time, we show that TENS is able to provide graded sensory feedback at multiple sites in both TSR and non-TSR amputees while using behavioral results to tune a neuromorphic stimulation pattern driven by a force sensor output from a prosthetic hand.