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Convergence of human brain mapping tools: Neuronavigated TMS Parameters and fMRI activity in the hand motor area

机译:人脑地图工具的融合:神经导航的TMS参数和手部运动区域的fMRI活动

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摘要

Functional magnetic resonance imaging (fMRI) and transcranial magnetic stimulation (TMS) are well‐established tools for investigating the human motor system in‐vivo. We here studied the relationship between movement‐related fMRI signal changes in the primary motor cortex (M1) and electrophysiological properties of the hand motor area assessed with neuronavigated TMS in 17 healthy subjects. The voxel showing the highest task‐related BOLD response in the left hand motor area during right hand movements was identified for each individual subject. This fMRI peak voxel in M1 served as spatial target for coil positioning during neuronavigated TMS. We performed correlation analyses between TMS parameters, BOLD signal estimates and effective connectivity parameters of M1 assessed with dynamic causal modeling (DCM). The results showed a negative correlation between the movement‐related BOLD signal in left M1 and resting as well as active motor threshold (MT) obtained for left M1. The DCM analysis revealed that higher excitability of left M1 was associated with a stronger coupling between left supplementary motor area (SMA) and M1. Furthermore, BOLD activity in left M1 correlated with ipsilateral silent period (ISP), i.e. the stronger the task‐related BOLD response in left M1, the higher interhemispheric inhibition effects targeting right M1. DCM analyses revealed a positive correlation between the coupling of left SMA with left M1 and the duration of ISP. The data show that TMS parameters assessed for the hand area of M1 do not only reflect the intrinsic properties at the stimulation site but also interactions with remote areas in the human motor system. Hum Brain Mapp, 2011. © 2011 Wiley‐Liss, Inc.
机译:功能磁共振成像(fMRI)和经颅磁刺激(TMS)是用于研究人体运动系统的成熟工具。我们在这里研究了17位健康受试者的初级运动皮层(M1)中与运动有关的功能性MRI信号变化与手部运动区的电生理特性之间的关系,并通过神经导航TMS进行了评估。对于每个个体,识别出在右手运动期间左手运动区域中与任务相关的最大BOLD响应最高的体素。 M1中的该fMRI峰体素在神经导航TMS期间用作线圈定位的空间目标。我们在TMS参数,BOLD信号估计和通过动态因果模型(DCM)评估的M1的有效连通性参数之间进行了相关分析。结果显示,左M1处与运动相关的BOLD信号与静止状态之间的负相关,以及左M1处获得的活动电机阈值(MT)。 DCM分析显示,左M1的较高兴奋性与左辅助运动区(SMA)和M1之间的较强耦合相关。此外,左M1中的BOLD活性与同侧静默期(ISP)相关,即左M1中与任务相关的BOLD反应越强,针对右M1的半球抑制作用越高。 DCM分析显示,左SMA与左M1的耦合与ISP的持续时间呈正相关。数据表明,针对M1的手部区域评估的TMS参数不仅反映了刺激部位的内在特性,而且还反映了与人体运动系统中远处区域的相互作用。嗡嗡的脑图,2011年。©2011 Wiley-Liss,Inc.

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