脑-机接口
感觉系统
神经假体
神经科学
运动皮层
接口(物质)
多路复用
传出的
生物
运动功能
感知
代理意识
计算机科学
人机交互
传入的
物理医学与康复
刺激
脑电图
电信
医学
肺表面活性物质
生物化学
吉布斯等温线
作者
Patrick D. Ganzer,Sam C. Colachis,Michael A. Schwemmer,David A. Friedenberg,Collin Dunlap,Carly E. Swiftney,Adam F. Jacobowitz,Doug Weber,Marcia Bockbrader,Gaurav Sharma
出处
期刊:Cell
[Elsevier]
日期:2020-05-01
卷期号:181 (4): 763-773.e12
被引量:116
标识
DOI:10.1016/j.cell.2020.03.054
摘要
Paralyzed muscles can be reanimated following spinal cord injury (SCI) using a brain-computer interface (BCI) to enhance motor function alone. Importantly, the sense of touch is a key component of motor function. Here, we demonstrate that a human participant with a clinically complete SCI can use a BCI to simultaneously reanimate both motor function and the sense of touch, leveraging residual touch signaling from his own hand. In the primary motor cortex (M1), residual subperceptual hand touch signals are simultaneously demultiplexed from ongoing efferent motor intention, enabling intracortically controlled closed-loop sensory feedback. Using the closed-loop demultiplexing BCI almost fully restored the ability to detect object touch and significantly improved several sensorimotor functions. Afferent grip-intensity levels are also decoded from M1, enabling grip reanimation regulated by touch signaling. These results demonstrate that subperceptual neural signals can be decoded from the cortex and transformed into conscious perception, significantly augmenting function.
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