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顶叶皮层经颅磁刺激(TMS)与3T磁共振成像(MRI)交替进行时,运动执行和想象过程中脑激活的变化。

Changes in cerebral activations during movement execution and imagery after parietal cortex TMS interleaved with 3T MRI.

作者信息

de Vries Paulien M, de Jong Bauke M, Bohning Daryl E, Walker John A, George Mark S, Leenders Klaus L

机构信息

Department of Neurology, University Medical Center Groningen, Institute of Behavioral and Cognitive Neuroscience, University of Groningen, The Netherlands.

出版信息

Brain Res. 2009 Aug 18;1285:58-68. doi: 10.1016/j.brainres.2009.06.006. Epub 2009 Jun 11.

Abstract

The left parietal cortex contributes to goal-directed hand movement. In this study, we targeted this region with transcranial magnetic stimulation (TMS) to assess the effects on a wider distributed circuitry related to motor control. Ten healthy subjects underwent 3 Tesla functional magnetic resonance imaging (fMRI) with interleaved TMS. They either executed or imagined right wrist flexion/extension movements, which was preceded by a 10-second period either with or without TMS. This was applied to the left superior parietal cortex in 10 stimuli of 1 Hz at 115% motor threshold intensity. TMS preceding the movement execution condition resulted in significantly increased activation in the bilateral prefrontal, right temporo-parietal and left posterior parietal cortices, when compared to movement without such intervention (P<0.001 voxel-level; P<0.05, volume corrected). Movement imagery after TMS showed significantly increased activation in the left medial prefrontal cortex, right lateral prefrontal cortex, left supramarginal gyrus and right occipital cortex, while a decrease was present in bilateral anterior parietal cortex (P<0.01 voxel-level; P<0.05 volume corrected). Activation changes after TMS of left superior parietal cortex thus appears to increase prefrontal and posterior parietal cortex activation, associated with a reduced function of the anterior parietal cortex, including S2. These changes are thought to reflect an impaired ability to estimate the proprioceptive consequences of movement during its preparation, which is compensated by the increased contribution of more remote parietal and prefrontal cortical regions.

摘要

左侧顶叶皮质参与目标导向的手部运动。在本研究中,我们采用经颅磁刺激(TMS)靶向该区域,以评估其对与运动控制相关的更广泛分布的神经回路的影响。10名健康受试者接受了3特斯拉功能磁共振成像(fMRI)检查,并同时进行TMS。他们执行或想象右手腕屈伸运动,在运动前10秒的时间段内,有的施加TMS,有的不施加。TMS以1赫兹的频率、115%的运动阈值强度,对左侧顶上小叶皮质进行10次刺激。与无此干预的运动相比,在运动执行条件之前施加TMS会导致双侧前额叶、右侧颞顶叶和左侧顶叶后部皮质的激活显著增加(体素水平P<0.001;校正体积后P<0.05)。TMS后的运动想象显示,左侧内侧前额叶皮质、右侧外侧前额叶皮质、左侧缘上回和右侧枕叶皮质的激活显著增加,而双侧顶叶前部皮质的激活减少(体素水平P<0.01;校正体积后P<0.05)。因此,左侧顶上小叶皮质经TMS刺激后的激活变化似乎增加了前额叶和顶叶后部皮质的激活,同时前顶叶皮质(包括S2)的功能有所降低。这些变化被认为反映了在运动准备过程中估计本体感觉后果的能力受损,这由更远端的顶叶和前额叶皮质区域增加的贡献所补偿。

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