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小脑-大脑相互作用在时间信息处理中的作用。

Cerebro-cerebellar interactions underlying temporal information processing.

机构信息

Kyoto University Graduate School of Medicine, Japan.

出版信息

J Cogn Neurosci. 2010 Dec;22(12):2913-25. doi: 10.1162/jocn.2010.21429.

Abstract

The neural basis of temporal information processing remains unclear, but it is proposed that the cerebellum plays an important role through its internal clock or feed-forward computation functions. In this study, fMRI was used to investigate the brain networks engaged in perceptual and motor aspects of subsecond temporal processing without accompanying coprocessing of spatial information. Direct comparison between perceptual and motor aspects of time processing was made with a categorical-design analysis. The right lateral cerebellum (lobule VI) was active during a time discrimination task, whereas the left cerebellar lobule VI was activated during a timed movement generation task. These findings were consistent with the idea that the cerebellum contributed to subsecond time processing in both perceptual and motor aspects. The feed-forward computational theory of the cerebellum predicted increased cerebro-cerebellar interactions during time information processing. In fact, a psychophysiological interaction analysis identified the supplementary motor and dorsal premotor areas, which had a significant functional connectivity with the right cerebellar region during a time discrimination task and with the left lateral cerebellum during a timed movement generation task. The involvement of cerebro-cerebellar interactions may provide supportive evidence that temporal information processing relies on the simulation of timing information through feed-forward computation in the cerebellum.

摘要

时间信息处理的神经基础仍不清楚,但据推测,小脑通过其内部时钟或前馈计算功能发挥重要作用。在这项研究中,我们使用 fMRI 来研究不伴随空间信息共处理的亚秒级时间处理的感知和运动方面的大脑网络。通过类别设计分析对时间处理的感知和运动方面进行了直接比较。在时间辨别任务中,右侧小脑(VI 叶)活跃,而在定时运动生成任务中,左侧小脑 VI 叶活跃。这些发现与小脑有助于感知和运动方面的亚秒级时间处理的观点一致。小脑的前馈计算理论预测,在时间信息处理过程中,大脑-小脑之间的相互作用会增加。实际上,心理生理相互作用分析确定了补充运动和背侧运动前区,在时间辨别任务中与右侧小脑区域以及在定时运动生成任务中与左侧外侧小脑具有显著的功能连接。大脑-小脑相互作用的参与可能提供支持性证据,表明时间信息处理依赖于通过小脑的前馈计算对时间信息的模拟。

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