认知
感觉系统
体感系统
电动机控制
心理学
神经科学
认知建筑学
语义学(计算机科学)
计算机科学
人机交互
认知心理学
认知科学
程序设计语言
作者
Richard A. Andersen,Tyson Aflalo,Luke Bashford,David A. Bjånes,Spencer Kellis
标识
DOI:10.1146/annurev-psych-030221-030214
摘要
Traditional brain–machine interfaces decode cortical motor commands to control external devices. These commands are the product of higher-level cognitive processes, occurring across a network of brain areas, that integrate sensory information, plan upcoming motor actions, and monitor ongoing movements. We review cognitive signals recently discovered in the human posterior parietal cortex during neuroprosthetic clinical trials. These signals are consistent with small regions of cortex having a diverse role in cognitive aspects of movement control and body monitoring, including sensorimotor integration, planning, trajectory representation, somatosensation, action semantics, learning, and decision making. These variables are encoded within the same population of cells using structured representations that bind related sensory and motor variables, an architecture termed partially mixed selectivity. Diverse cognitive signals provide complementary information to traditional motor commands to enable more natural and intuitive control of external devices.
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