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人类大脑中的多种运动表征:一项事件相关功能磁共振成像研究。

Multiple movement representations in the human brain: an event-related fMRI study.

作者信息

Toni Ivan, Shah Nadim J, Fink Gereon R, Thoenissen Daniel, Passingham Richard E, Zilles Karl

机构信息

Centre for Cognitive Neuroimaging, University of Nijmegen, PO Box 9101, NL-6500 HB Nijmegen, The Netherlands.

出版信息

J Cogn Neurosci. 2002 Jul 1;14(5):769-84. doi: 10.1162/08989290260138663.

Abstract

Neurovascular correlates of response preparation have been investigated in human neuroimaging studies. However, conventional neuroimaging cannot distinguish, within the same trial, between areas involved in response selection and/or response execution and areas specifically involved in response preparation. The specific contribution of parietal and frontal areas to motor preparation has been explored in electrophysiological studies in monkey. However, the associative nature of sensorimotor tasks calls for the additional contributions of other cortical regions. In this article, we have investigated the functional anatomy of movement representations in the context of an associative visuomotor task with instructed delays. Neural correlates of movement representations have been assessed by isolating preparatory activity that is independent from the performance of an actual motor act, or from the presence of a response's target. Movement instruction (specified by visual cues) and motor performance (specified by an auditory cue) were separated by a variable delay period. We have used whole-brain event-related fMRI to measure human brain activity during the performance of such a task. We have focused our analysis on specific preparatory activity, defined as a sustained response over variable delay periods between a transient visual instruction cue and a brief motor response, temporally independent from the transient events. Behavioral and electrophysiological controls ensured that preparatory activity was not contaminated by overt motor responses or working memory processes. We report suggestive evidence for multiple movement representations in the human brain. Specific sustained activity in preparation for an action was found not only in parieto-frontal regions but also in extrastriate areas and in the posterior portion of the superior temporal sulcus. We suggest that goal-directed preparatory activity relies on both visuomotor and visuoperceptual areas. These findings point to a functional-anatomical basis for the integration of perceptual and executive processes.

摘要

人类神经影像学研究已对反应准备的神经血管相关性进行了调查。然而,传统的神经影像学无法在同一次试验中区分参与反应选择和/或反应执行的区域与专门参与反应准备的区域。在猴子的电生理研究中,已经探讨了顶叶和额叶区域对运动准备的具体贡献。然而,感觉运动任务的关联性需要其他皮质区域的额外贡献。在本文中,我们在一项伴有指令延迟的关联性视觉运动任务的背景下,研究了运动表征的功能解剖结构。通过分离独立于实际运动行为表现或反应目标存在的准备活动,评估了运动表征的神经相关性。运动指令(由视觉线索指定)和运动表现(由听觉线索指定)被一个可变的延迟期隔开。我们使用全脑事件相关功能磁共振成像来测量人类在执行此类任务期间的大脑活动。我们将分析重点放在特定的准备活动上,该活动被定义为在短暂视觉指令线索和短暂运动反应之间的可变延迟期内的持续反应,在时间上独立于短暂事件。行为和电生理控制确保准备活动不会被明显的运动反应或工作记忆过程所干扰。我们报告了人类大脑中存在多种运动表征的提示性证据。不仅在顶叶 - 额叶区域,而且在纹外区域和颞上沟后部发现了为动作做准备的特定持续活动。我们认为,目标导向的准备活动依赖于视觉运动和视觉感知区域。这些发现为感知和执行过程的整合提供了功能解剖学基础。

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