Subthreshold intracortical microstimulation of human somatosensory cortex enhances tactile sensitivity

Luke E Osborn, Breanne Christie, David P McMullen, Victoria Arriola, Tessy M Thomas, Ambarish S Pawar, Robert W Nickl, Manuel Alejandro Anaya, Brock A Wester, Charles M Greenspon, Gabriela L Cantarero, Pablo A Celnik, Sliman J Bensmaia, Jeffrey M Yau, Matthew S Fifer, Francesco V Tenore
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Abstract

Intracortical microstimulation (ICMS) of the somatosensory cortex activates neurons around the stimulating electrodes and can elicit tactile sensations. However, it is not clear how the direct activation of cortical neurons influences their ability to process additional tactile inputs originating from the skin. In a human implanted with chronic microelectrode arrays in both left and right somatosensory cortices, we presented mechanical vibration to the skin while simultaneously delivering ICMS and quantified the effects of combined mechanical and electrical stimulation on tactile perception. We found that subthreshold ICMS enhanced sensitivity to touch on the skin, as evidenced by a reduction in vibrotactile detection thresholds (median: -1.5 dB), but subthreshold vibration did not systematically impact the detectability of ICMS. Suprathreshold vibration led to an increase in ICMS thresholds (median: 2.4 dB) but suprathreshold ICMS had little impact on vibrotactile thresholds. The ICMS-induced enhancement of vibrotactile sensitivity was location dependent with the effect size decreasing as the projected field of the stimulating electrode and the locus of vibratory stimulation became farther apart. These results demonstrate that targeted microstimulation of cortex alone can focally enhance tactile sensitivity, potentially enabling restoration or strengthening of retained tactile sensations after injury.
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对人类体感皮层进行阈下皮层内微刺激可提高触觉灵敏度
躯体感觉皮层皮质内微刺激(ICMS)可激活刺激电极周围的神经元,从而激发触觉。然而,皮层神经元的直接激活如何影响它们处理来自皮肤的额外触觉输入的能力,目前尚不清楚。我们在一名左右躯体感觉皮层都植入了慢性微电极阵列的人身上,在向皮肤提供机械振动的同时提供 ICMS,并量化了机械和电刺激对触觉感知的影响。我们发现,阈下 ICMS 增强了对皮肤触觉的敏感性,表现为振动触觉检测阈值的降低(中位数:-1.5 dB),但阈下振动并未系统地影响 ICMS 的可检测性。阈上振动导致 ICMS 阈值升高(中位数:2.4 dB),但阈上 ICMS 对振动触觉阈值影响不大。ICMS 引起的振动触觉灵敏度增强与位置有关,当刺激电极的投射场与振动刺激位置相距较远时,效应大小会减小。这些结果表明,仅对大脑皮层进行有针对性的微刺激就能局部增强触觉灵敏度,从而有可能恢复或增强受伤后保留的触觉。
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