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在隐性想象抓握过程中顶额叶回路的选择性激活。

Selective activation of a parietofrontal circuit during implicitly imagined prehension.

作者信息

Johnson S H, Rotte M, Grafton S T, Hinrichs H, Gazzaniga M S, Heinze H J

机构信息

Center for Cognitive Neuroscience, Dartmouth College, Hanover, New Hampshire 03755-3569, USA.

出版信息

Neuroimage. 2002 Dec;17(4):1693-704. doi: 10.1006/nimg.2002.1265.

Abstract

It is generally held that motor imagery is the internal simulation of movements involving one's own body in the absence of overt execution. Consistent with this hypothesis, results from numerous functional neuroimaging studies indicate that motor imagery activates a large variety of motor-related brain regions. However, it is unclear precisely which of these areas are involved in motor imagery per se as opposed to other planning processes that do not involve movement simulation. In an attempt to resolve this issue, we employed event-related fMRI to separate activations related to hand preparation-a task component that does not demand imagining movements-from grip selection-a component previously shown to require the internal simulation of reaching movements. Our results show that in contrast to preparation of overt actions, preparation of either hand for covert movement simulation activates a large network of motor-related areas located primarily within the left cerebral and right cerebellar hemispheres. By contrast, imagined grip selection activates a distinct parietofrontal circuit that includes the bilateral dorsal premotor cortex, contralateral intraparietal sulcus, and right superior parietal lobule. Because these areas are highly consistent with the frontoparietal reach circuit identified in monkeys, we conclude that motor imagery involves action-specific motor representations computed in parietofrontal circuits.

摘要

一般认为,运动想象是在没有明显执行动作的情况下对涉及自身身体的动作进行内部模拟。与这一假设一致,众多功能神经影像学研究的结果表明,运动想象会激活大量与运动相关的脑区。然而,目前尚不清楚这些区域中究竟哪些与运动想象本身有关,哪些与不涉及运动模拟的其他计划过程有关。为了解决这个问题,我们采用事件相关功能磁共振成像(fMRI)来区分与手部准备相关的激活——手部准备是一项不要求想象动作的任务组成部分——以及与握力选择相关的激活,握力选择是先前已证明需要对伸手动作进行内部模拟的一个组成部分。我们的结果表明,与明显动作的准备不同,为隐蔽运动模拟而准备任何一只手都会激活一个主要位于左脑和右小脑半球内的与运动相关区域的大网络。相比之下,想象中的握力选择会激活一个独特的顶叶 - 额叶回路,该回路包括双侧背侧运动前皮质、对侧顶内沟和右侧顶上小叶。由于这些区域与在猴子身上发现的额顶叶伸手回路高度一致,我们得出结论,运动想象涉及在顶叶 - 额叶回路中计算的特定动作运动表征。

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