具身认知
电动机控制
计算机科学
人工神经网络
人口
控制(管理)
神经科学
神经生理学
神经假体
神经工程
人工智能
两足动物
认知科学
神经假体
内部模型
计算模型
心理学
神经活动
脑-机接口
生物神经网络
点(几何)
运动学习
神经系统
控制系统
控制工程
反馈控制
集合(抽象数据类型)
生物力学
神经网络
人机交互
汽车规划
神经计算模型
作者
Muhammad Noman Almani,John Lazzari,Jeff Walker,Shreya Saxena
出处
期刊:PubMed
[National Institutes of Health]
日期:2025-09-17
摘要
We review how sensorimotor control is dictated by interacting neural populations, optimal feedback mechanisms, and the biomechanics of bodies. First, we outline the distributed anatomical loops that shuttle sensorimotor signals between cortex, subcortical regions, and spinal cord. We then summarize evidence that neural population activity occupies low-dimensional, dynamically evolving manifolds during planning and execution of movements. Next, we summarize literature explaining motor behavior through the lens of optimal control theory, which clarifies the role of internal models and feedback during motor control. Finally, recent studies on embodied sensorimotor control address gaps within each framework by aiming to elucidate neural population activity through the explicit control of musculoskeletal dynamics. We close by discussing open problems and opportunities: multi-tasking and cognitively rich behavior, multi-regional circuit models, and the level of anatomical detail needed in body and network models. Together, this review and recent advances point towards reaching an integrative account of the neural control of movement.
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