运动相关皮层电位的产生源:功能磁共振成像约束的脑电图偶极子源分析。

Generators of movement-related cortical potentials: fMRI-constrained EEG dipole source analysis.

作者信息

Toma Keiichiro, Matsuoka Takahiro, Immisch Ilka, Mima Tatsuya, Waldvogel Daniel, Koshy Benjamin, Hanakawa Takashi, Shill Holly, Hallett Mark

机构信息

Human Motor Control Section, Medical Neurology Branch, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892-1428, USA.

出版信息

Neuroimage. 2002 Sep;17(1):161-73. doi: 10.1006/nimg.2002.1165.

Abstract

To clarify the precise location and timing of the mo tor cortical activation in voluntary movement, dipole source analysis integrating multiple constraints wa conducted for the movement-related cortical potentia (MRCP). Six healthy subjects performed single self paced extensions of the right index finger at about 15-intervals during EEG and event-related fMRI acquisi tions. EEG was recorded from 58 scalp electrodes, and fMRI of the entire brain was obtained every 2.6 s. Coordinates of the two methods were coregistered us ing anatomical landmarks. During dipole source mod eling, a realistic three-layer head model was used as a volume conductor. To identify the number of uncorre lated source s in the MRCP, principal component (PC analysis was performed, which was consistent with the existence of six sources in the left (Lt SM1) and right (Rt SMI) sensorimotor and medial frontocentral (MFC) areas. After dipoles were seeded at the acti vated spots revealed by fMRI, dipole orientations were fixed based on the interpretation of the topography of distribution of the PC. The strength of the six dipoles (three dipoles in Lt SMI, two in Rt SMI, and one in MFC) was then computed over time. Within the bilat eral SM1, activation of the precentral gyrus occurs bilaterally with similar strength from -1.2 s, followed by that of the precentral bank from -0.5 s with con tralateral preponderance. Subsequently, the postcen tral bank becomes active only on the contralateral side at 0.1 s after movement. Activation of the MFC shows timing similar to that of the bilateral precentral gyri These deduced patterns of activation are consis tent with previous studies of electrocorticography in humans.

摘要

为了明确在自主运动中运动皮层激活的精确位置和时间,对运动相关皮层电位(MRCP)进行了整合多种约束条件的偶极子源分析。6名健康受试者在脑电图(EEG)和事件相关功能磁共振成像(fMRI)采集过程中,以大约15秒的间隔进行了右侧食指的单次自定步速伸展。EEG由58个头皮电极记录,全脑fMRI每2.6秒获取一次。两种方法的坐标通过解剖标志进行配准。在偶极子源建模过程中,使用了一个逼真的三层头部模型作为容积导体。为了确定MRCP中不相关源的数量,进行了主成分(PC)分析,结果与左侧(Lt SM1)和右侧(Rt SMI)感觉运动区及内侧额中央(MFC)区存在6个源一致。在fMRI显示的激活点植入偶极子后,根据PC分布地形图的解释固定偶极子方向。然后计算6个偶极子(Lt SMI中有3个偶极子,Rt SMI中有2个,MFC中有1个)随时间的强度。在双侧SM1内,中央前回的激活在双侧从-1.2秒开始以相似强度出现,随后中央前沟从-0.5秒开始激活,对侧占优势。随后,中央后沟在运动后0.1秒仅在对侧活跃。MFC的激活时间与双侧中央前回相似。这些推断的激活模式与先前人类皮层脑电图研究一致。

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