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小脑和纹状体在亚秒和超秒时间中的交互作用:对时间处理的启动、继续、调整和终止(ICAT)模型的支持。

Interactive roles of the cerebellum and striatum in sub-second and supra-second timing: Support for an initiation, continuation, adjustment, and termination (ICAT) model of temporal processing.

机构信息

Department of Psychology and Neuroscience, Duke University, Durham, NC, USA.

Department of Experimental Medical Science, Lund University, Lund, Sweden.

出版信息

Neurosci Biobehav Rev. 2016 Dec;71:739-755. doi: 10.1016/j.neubiorev.2016.10.015. Epub 2016 Oct 20.

Abstract

The contributions of cortico-cerebellar and cortico-striatal circuits to timing and time perception have often been a point of contention. In this review we propose that the cerebellum principally functions to reduce variability, through the detection of stimulus onsets and the sub-division of longer durations, thus contributing to both sub-second and supra-second timing. This sensitivity of the cerebellum to stimulus dynamics and subsequent integration with motor control allows it to accurately measure intervals within a range of 100-2000ms. For intervals in the supra-second range (e.g., >2000ms), we propose that cerebellar output signals from the dentate nucleus pass through thalamic connections to the striatum, where cortico-thalamic-striatal circuits supporting higher-level cognitive functions take over. Moreover, the importance of intrinsic circuit dynamics as well as behavioral, neuroimaging, and lesion studies of the cerebellum and striatum are discussed in terms of a framework positing initiation, continuation, adjustment, and termination phases of temporal processing.

摘要

皮质-小脑和皮质-纹状体回路对时间和时间感知的贡献常常是争论的焦点。在这篇综述中,我们提出小脑主要通过检测刺激起始和长时程的细分来减少变异性,从而有助于亚秒和超秒计时。小脑对刺激动态的这种敏感性以及随后与运动控制的整合,使其能够准确测量 100-2000ms 范围内的间隔。对于超秒范围的间隔(例如,>2000ms),我们提出从齿状核发出的小脑输出信号通过丘脑连接传递到纹状体,在那里支持更高层次认知功能的皮质-丘脑-纹状体回路接管。此外,还讨论了内在电路动力学以及小脑和纹状体的行为、神经影像学和损伤研究的重要性,这些研究是基于一个假设,即时间处理有启动、持续、调整和终止四个阶段。

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