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背侧运动前区皮质运动和认知功能背后的功能耦合。

Functional coupling underlying motor and cognitive functions of the dorsal premotor cortex.

作者信息

Abe Mitsunari, Hanakawa Takashi

机构信息

Human Brain Research Center, Kyoto University Graduate School of Medicine, 54 Kawaharacho, Sakyo, Kyoto 606-8507, Japan.

出版信息

Behav Brain Res. 2009 Mar 2;198(1):13-23. doi: 10.1016/j.bbr.2008.10.046. Epub 2008 Nov 14.

Abstract

This review article discusses mechanisms of how distinct behavioral operations are organized by different modules distributed in the frontal cortex. Cognitive manipulation often requires a flow of multiple elementary sub-operations processed in specialized brain regions. The dorsolateral prefrontal cortex (dlPFC) is likely responsible for attentional selection, which orients organisms' mental resources to behaviorally relevant information. The dorsal premotor cortex (PMd) is implicated to possess a functional gradient along the rostral-caudal axis. The rostral sector of the PMd (pre-PMd) is involved in various cognitive/premovement processes while its caudal sector (PMd proper) primarily controls actual movement. Neurophysiology studies in monkeys have shown that the pre-PMd, when functionally coupled with the dlPFC, may transform independent working memory items into a single sequence (sequence generation). A neuroimaging study has shown that the pre-PMd is indeed involved in sequence generation under the influence of the dlPFC in humans. It has been also indicated that the dlPFC and the pre-PMd are functionally coupled when attentional selection and sequence generation are to be unified for serial information processing. Functional interplay through the prefrontal-premotor connections may mediate the integration of specific sub-operations for multi-step cognitive manipulation. Furthermore, evidence from a meta-analysis of the imaging literature is argued for an idea that the coupling pattern with other frontal cortical areas may characterize of the function of the pre-PMd and PMd proper in various motor and cognitive tasks.

摘要

这篇综述文章讨论了分布在额叶皮质的不同模块如何组织不同行为操作的机制。认知操作通常需要在专门的脑区中处理多个基本子操作的流程。背外侧前额叶皮质(dlPFC)可能负责注意力选择,它将生物体的心理资源导向行为相关信息。背侧运动前皮质(PMd)被认为在喙尾轴上具有功能梯度。PMd的喙侧部分(前PMd)参与各种认知/运动前过程,而其尾侧部分(真正的PMd)主要控制实际运动。对猴子的神经生理学研究表明,前PMd在与dlPFC功能耦合时,可能将独立的工作记忆项目转化为单个序列(序列生成)。一项神经影像学研究表明,在人类中,前PMd确实在dlPFC的影响下参与序列生成。研究还表明,当注意力选择和序列生成要统一用于串行信息处理时,dlPFC和前PMd在功能上是耦合的。通过前额叶 - 运动前连接的功能相互作用可能介导多步骤认知操作中特定子操作的整合。此外,成像文献的荟萃分析证据支持这样一种观点,即与其他额叶皮质区域的耦合模式可能表征前PMd和真正的PMd在各种运动和认知任务中的功能。

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