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运动过程中皮质表面电位的频谱变化。

Spectral changes in cortical surface potentials during motor movement.

作者信息

Miller Kai J, Leuthardt Eric C, Schalk Gerwin, Rao Rajesh P N, Anderson Nicholas R, Moran Daniel W, Miller John W, Ojemann Jeffrey G

机构信息

Department of Physics, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Neurosci. 2007 Feb 28;27(9):2424-32. doi: 10.1523/JNEUROSCI.3886-06.2007.

Abstract

In the first large study of its kind, we quantified changes in electrocorticographic signals associated with motor movement across 22 subjects with subdural electrode arrays placed for identification of seizure foci. Patients underwent a 5-7 d monitoring period with array placement, before seizure focus resection, and during this time they participated in the study. An interval-based motor-repetition task produced consistent and quantifiable spectral shifts that were mapped on a Talairach-standardized template cortex. Maps were created independently for a high-frequency band (HFB) (76-100 Hz) and a low-frequency band (LFB) (8-32 Hz) for several different movement modalities in each subject. The power in relevant electrodes consistently decreased in the LFB with movement, whereas the power in the HFB consistently increased. In addition, the HFB changes were more focal than the LFB changes. Sites of power changes corresponded to stereotactic locations in sensorimotor cortex and to the results of individual clinical electrical cortical mapping. Sensorimotor representation was found to be somatotopic, localized in stereotactic space to rolandic cortex, and typically followed the classic homunculus with limited extrarolandic representation.

摘要

在同类的首个大型研究中,我们对22名植入硬膜下电极阵列以确定癫痫病灶的受试者在运动过程中皮质电图信号的变化进行了量化。患者在癫痫病灶切除术前接受了为期5 - 7天的电极阵列植入监测期,在此期间他们参与了该研究。基于间隔的运动重复任务产生了一致且可量化的频谱变化,这些变化被映射到Talairach标准化模板皮质上。针对每个受试者的几种不同运动模式,分别为高频带(HFB)(76 - 100Hz)和低频带(LFB)(8 - 32Hz)创建了图谱。随着运动,相关电极处的低频带功率持续下降,而高频带功率持续增加。此外,高频带的变化比低频带的变化更具局灶性。功率变化部位与感觉运动皮层的立体定向位置以及个体临床皮层电图结果相对应。发现感觉运动表征是躯体定位的,在立体定向空间中定位于中央前回皮层,并且通常遵循经典的小人像,仅有有限的中央前回以外的表征。

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