Hoshiyama M, Kakigi R, Berg P, Koyama S, Kitamura Y, Shimojo M, Watanabe S, Nakamura A
Department of Integrative Physiology, National Institute for Physiological Sciences, Myodaiji, Okazaki, Japan.
Exp Brain Res. 1997 Jun;115(1):6-14. doi: 10.1007/pl00005685.
We investigated the movement-related cortical fields (MRCFs) recorded by magnetoencephalography (MEG) to identify the motor and sensory brain activities at the instant of the unilateral finger movement using six normal subjects. We focused our investigation on the source analysis of the events tightly linked to movement onset, and we used brain electric source analysis (BESA) to model the sources generating MRCFs during the interval from 200 ms before to 150 ms after the movement onset. Four sources provided satisfactory solutions for MRCF activities in this interval. Sources 1 and 2, which were located in the pre-central regions in the hemisphere contralateral and ipsilateral to the moved finger, respectively, generated the readiness fields (RF), but source 1 was predominant just before movement onset. The motor field (MF), the peak of which was just after movement onset, was mainly generated by source 1. Sources 3 and 4 were located in the post-central regions in the hemisphere contralateral and ipsilateral to the moved finger, respectively. The first motor evoked field (MEF-I), the peak of which was about 80 ms after the movement, was mainly generated by source 3, but with the participation of sources 1, 2 and 4. The results indicated that the activities of both pre -and post-central regions in bilateral hemispheres were related to voluntary movements, although the predominant areas varied over time. This is the first noninvasive study to clarify the complex spatiotemporal activities relating movements in humans using a multi-channel MEG system.
我们利用六名正常受试者,研究了通过脑磁图(MEG)记录的运动相关皮层区域(MRCFs),以确定单侧手指运动瞬间的运动和感觉脑活动。我们将研究重点放在与运动起始紧密相关事件的源分析上,并使用脑电源分析(BESA)对运动起始前200毫秒至运动起始后150毫秒期间产生MRCFs的源进行建模。在此期间,四个源为MRCF活动提供了令人满意的解决方案。源1和源2分别位于与移动手指相对的半球和同侧半球的中央前区域,产生准备场(RF),但在运动起始前源1占主导地位。运动场(MF)的峰值恰好在运动起始后,主要由源1产生。源3和源4分别位于与移动手指相对的半球和同侧半球的中央后区域。第一个运动诱发电场(MEF-I)的峰值在运动后约80毫秒,主要由源3产生,但也有源1、源2和源4的参与。结果表明,双侧半球中央前和中央后区域的活动都与自主运动有关,尽管主要区域随时间变化。这是第一项使用多通道MEG系统阐明人类运动相关复杂时空活动的非侵入性研究。