论文标题

在人类截肢者中,犹他州倾斜电极阵列引起的多种皮肤和本体感受手感知的歧视

Discrimination Among Multiple Cutaneous and Proprioceptive Hand Percepts Evoked by Nerve Stimulation with Utah Slanted Electrode Arrays in Human Amputees

论文作者

Page, David M., Wendelken, Suzanne M., Davis, Tyler S., Kluger, David T., Hutchinson, Douglas T., George, Jacob A., Clark, Gregory A.

论文摘要

目的:本文旨在证明在具有不同位置,质量和强度的恢复的手动感觉之间,这些手动刺激刺激了人类截肢者中残留的传入纤维。方法:我们将犹他州倾斜的电极阵列(USEA)植入了三个跨放大器的中位和尺尺的残留臂神经,并通过不同的电极和不同的频率在缺失的手上产生各种位置,质量和强度。进行了盲目歧视试验,以确定受试者如何在这些恢复的感觉之间进行区分。结果:受试者在盲试验中具有不同皮肤和本体感受的位置,质量和强度的恢复感官感知,包括在多达10种不同的位置强度组合(15/30成功,p <0.0005)中歧视。通过电极选择,神经内部刺激部位的变化实现了多达5个位置和质量之间的歧视(35/35成功,p <0.0001)。刺激频率的变化使在同一位置的4个不同强度之间有歧视(13/20成功,p <0.005)。在多传感器闭环假体中可能需要的两种不同的USEA电极的同时,交替和孤立的刺激中,一个受试者在同时,交替和孤立的刺激中进行区分(20/25成功,p <0.001)。结论:USEA刺激能够编码具有不同位置,质量和强度的各种功能可区分的感觉。意义:这些感知提供了潜在的感官反馈来源,可以增强多传感器,闭环假体期间的性能和实施例。

Objective: This paper aims to demonstrate functional discriminability among restored hand sensations with different locations, qualities, and intensities that are evoked by microelectrode stimulation of residual afferent fibers in human amputees. Methods: We implanted a Utah Slanted Electrode Array (USEA) in the median and ulnar residual arm nerves of three transradial amputees and delivered stimulation via different electrodes and at different frequencies to produce various locations, qualities, and intensities of sensation on the missing hand. Blind discrimination trials were performed to determine how well subjects could discriminate among these restored sensations. Results: Subjects discriminated among restored sensory percepts with varying cutaneous and proprioceptive locations, qualities, and intensities in blind trials, including discrimination among up to 10 different location-intensity combinations (15/30 successes, p < 0.0005). Variations in the site of stimulation within the nerve, via electrode selection, enabled discrimination among up to 5 locations and qualities (35/35 successes, p < 0.0001). Variations in the stimulation frequency enabled discrimination among 4 different intensities at the same location (13/20 successes, p < 0.005). One subject discriminated among simultaneous, alternating, and isolated stimulation of two different USEA electrodes, as may be desired during multi-sensor closed-loop prosthesis use (20/25 successes, p < 0.001). Conclusion: USEA stimulation enables encoding of a diversity of functionally discriminable sensations with different locations, qualities, and intensities. Significance: These percepts provide a potentially rich source of sensory feedback that may enhance performance and embodiment during multi-sensor, closed-loop prosthesis use.

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