脑-机接口
体感系统
微刺激
四肢瘫痪
神经假体
计算机科学
抓住
接口(物质)
机械臂
物理医学与康复
感觉系统
人工智能
人机交互
触觉技术
心理学
神经科学
医学
脑电图
刺激
气泡
最大气泡压力法
并行计算
脊髓损伤
脊髓
程序设计语言
作者
Sharlene N. Flesher,John E. Downey,Jeffrey M. Weiss,Christopher Hughes,Angelica J. Herrera,Elizabeth C. Tyler‐Kabara,Michael L. Boninger,Jennifer L. Collinger,Robert A. Gaunt
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2021-05-21
卷期号:372 (6544): 831-836
被引量:389
标识
DOI:10.1126/science.abd0380
摘要
Prosthetic arms controlled by a brain-computer interface can enable people with tetraplegia to perform functional movements. However, vision provides limited feedback because information about grasping objects is best relayed through tactile feedback. We supplemented vision with tactile percepts evoked using a bidirectional brain-computer interface that records neural activity from the motor cortex and generates tactile sensations through intracortical microstimulation of the somatosensory cortex. This enabled a person with tetraplegia to substantially improve performance with a robotic limb; trial times on a clinical upper-limb assessment were reduced by half, from a median time of 20.9 to 10.2 seconds. Faster times were primarily due to less time spent attempting to grasp objects, revealing that mimicking known biological control principles results in task performance that is closer to able-bodied human abilities.
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