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结论放电对行动和认知的影响。

Corollary Discharge for Action and Cognition.

机构信息

Department of Neurobiology, Duke University, Durham, North Carolina; Center for Cognitive Neuroscience, Duke University, Durham, North Carolina.

Department of Biomedical Engineering, Duke University, Durham, North Carolina.

出版信息

Biol Psychiatry Cogn Neurosci Neuroimaging. 2019 Sep;4(9):782-790. doi: 10.1016/j.bpsc.2019.05.010. Epub 2019 May 30.

Abstract

In motor systems, a copy of the movement command known as corollary discharge is broadcast to other regions of the brain to warn them of the impending movement. The premise of this review is that the concept of corollary discharge may generalize in revealing ways to the brain's cognitive systems. An oculomotor pathway from the brain stem to frontal cortex provides a well-established example of how corollary discharge is instantiated for sensorimotor processing. Building on causal evidence from inactivation of the pathway, we motivate forward models as a tool for understanding the contributions of corollary discharge to perception and movement. Finally, we extend the definition of corollary discharge to account for signals that may be used for cognitive forward models of decision making. This framework may provide new insights into signals and circuits that contribute to sequential decision processes, the breakdown of which may account for some symptoms of psychiatric disorders.

摘要

在运动系统中,运动指令的副本(被称为副放电)会广播到大脑的其他区域,以警告它们即将发生的运动。本综述的前提是,副放电的概念可能以揭示大脑认知系统的方式推广。从脑干到额叶皮层的眼球运动通路为副放电如何实例化用于感觉运动处理提供了一个很好的例子。基于该通路失活的因果证据,我们将前馈模型作为理解副放电对感知和运动贡献的工具。最后,我们扩展了副放电的定义,以解释可能用于决策认知前馈模型的信号。该框架可以为有助于序列决策过程的信号和电路提供新的见解,而这些过程的崩溃可能是一些精神障碍症状的原因。

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