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alpha/beta 频段活动与人类感觉运动皮层 BOLD 之间的任务相关反应呈负相关:运动想象和运动的 EEG 和 fMRI 研究。

Negative covariation between task-related responses in alpha/beta-band activity and BOLD in human sensorimotor cortex: an EEG and fMRI study of motor imagery and movements.

机构信息

Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Neuroimage. 2010 Feb 1;49(3):2596-606. doi: 10.1016/j.neuroimage.2009.10.028. Epub 2009 Oct 19.

Abstract

Similar to the occipital alpha rhythm, electroencephalographic (EEG) signals in the alpha- and beta-frequency bands can be suppressed by movement or motor imagery and have thus been thought to represent the "idling state" of the sensorimotor cortex. A negative correlation between spontaneous alpha EEG and blood-oxygen-level-dependent (BOLD) signals has been reported in combined EEG and fMRI (functional Magnetic Resonance Imaging) experiments when subjects stayed at the resting state or alternated between the resting state and a task. However, the precise nature of the task-induced alpha modulation remains elusive. It was not clear whether alpha/beta rhythm suppressions may co-vary with BOLD when conducting tasks involving varying activations of the cortex. Here, we quantified the task-evoked responses of BOLD and alpha/beta-band power of EEG directly in the cortical source domain, by using source imaging technology, and examined their covariation across task conditions in a mixed block and event-related design. In this study, 13 subjects performed tasks of right-hand, right-foot or left-hand movement and motor imagery when EEG and fMRI data were separately collected. Task-induced increase of BOLD signal and decrease of EEG amplitudes in alpha and beta bands were shown to be co-localized at the somatotopic sensorimotor cortex. At the corresponding regions, the reciprocal changes of the two signals co-varied in the magnitudes across imagination and movement conditions. The spatial correspondence and negative covariation between the two measurements were further shown to exist at somatotopic brain regions associated with different body parts. These results suggest an inverse functional coupling relationship between task-induced changes of BOLD and low-frequency EEG signals.

摘要

与枕部 alpha 节律类似,alpha 和 beta 频带的脑电图 (EEG) 信号可以被运动或运动想象抑制,因此被认为代表了感觉运动皮层的“空闲状态”。在 EEG 和 fMRI(功能磁共振成像)联合实验中,当受试者处于静息状态或在静息状态和任务之间交替时,自发 alpha EEG 与血氧水平依赖 (BOLD) 信号之间存在负相关。然而,任务诱导的 alpha 调制的确切性质仍然难以捉摸。当涉及到皮层不同激活的任务时,alpha/beta 节律抑制是否可能与 BOLD 共同变化尚不清楚。在这里,我们通过使用源成像技术,在皮质源域中直接量化 BOLD 和 EEG alpha/beta 频带功率的任务诱发反应,并在混合块和事件相关设计中检查它们在任务条件下的变化。在这项研究中,13 名受试者在手、脚或左手运动和运动想象时分别进行了 EEG 和 fMRI 数据的采集。当 EEG 和 fMRI 数据分别采集时,BOLD 信号的任务诱发增加和 alpha 和 beta 波段的 EEG 幅度的减少被显示为在躯体感觉运动皮层的躯体定位上共定位。在相应区域,两种信号的相互变化在想象和运动条件下的幅度上共同变化。这两种测量之间的空间对应关系和负相关在与不同身体部位相关的躯体定位脑区进一步得到证明。这些结果表明,BOLD 和低频 EEG 信号的任务诱导变化之间存在反向功能耦合关系。

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