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丘脑在分布式认知控制中的作用。

Thalamic functions in distributed cognitive control.

机构信息

Department of Brain and Cognitive Science, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Nat Neurosci. 2017 Dec;20(12):1669-1679. doi: 10.1038/s41593-017-0020-1. Epub 2017 Nov 28.

Abstract

Cognition can be conceptualized as a set of algorithmic control functions whose real-time deployment determines how an organism stores and uses information to guide thought and action. A subset of these functions is required for goal-directed selection and amplification of sensory signals-broadly referred to as attention-and for its flexible control and its interaction with processes such as working memory and decision making. While the contribution of recurrent cortical microcircuits to cognition has been extensively studied, the role of the thalamus is just beginning to be elucidated. Here we highlight recent studies across rodents and primates showing how thalamus contributes to attentional control. In addition to high-fidelity information relay to or between cortical regions, thalamic circuits shift and sustain functional interactions within and across cortical areas. This thalamic process enables rapid coordination of spatially segregated cortical computations, thereby constructing task-relevant functional networks. Because such function may be critical for cognitive flexibility, clarifying its mechanisms will likely expand our basic understanding of cognitive control and its perturbation in disease.

摘要

认知可以被概念化为一组算法控制功能,其实时部署决定了生物体如何存储和使用信息来指导思维和行动。这些功能中有一部分是目标导向的选择和放大感觉信号所必需的,通常被称为注意力,并且需要其灵活的控制及其与工作记忆和决策等过程的相互作用。虽然皮层微电路的循环对认知的贡献已经被广泛研究,但丘脑的作用才刚刚开始被阐明。在这里,我们强调了最近在啮齿动物和灵长类动物中进行的研究,这些研究表明了丘脑如何有助于注意力控制。除了向皮质区域或在皮质区域之间进行高保真信息传递外,丘脑回路还在皮质区域内和之间转换和维持功能相互作用。这个丘脑过程使空间分离的皮质计算能够快速协调,从而构建与任务相关的功能网络。由于这种功能对于认知灵活性可能至关重要,因此阐明其机制可能会扩展我们对认知控制及其在疾病中的干扰的基本理解。

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