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Isolating human brain functional connectivity associated with a specific cognitive process

机译:分离与特定认知过程相关的人脑功能连通性

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The use of functional magnetic resonance imaging (fMRI) to measure functional connectivity among brain areas has the potential to identify neural networks associated with particular cognitive processes. However, fMRI signals are not a direct measure of neural activity but rather represent blood oxygenation level-dependent (BOLD) signals. Correlated BOLD signals between two brain regions are therefore a combination of neural, neurovascular, and vascular coupling. Here, we describe a procedure for isolating brain functional connectivity associated with a specific cognitive process. Coherency magnitude (measuring the strength of coupling between two time series) and phase (measuring the temporal latency differences between two time series) are computed during performance of a particular cognitive task and also for a control condition. Subtraction of the coherency magnitude and phase differences for the two conditions removes sources of correlated BOLD signals that do not modulate as a function of cognitive task, resulting in a more direct measure of functional connectivity associated with changes in neuronal activity. We present two applications of this task subtraction procedure, one to measure changes in strength of coupling associated with sustained visual spatial attention, and one to measure changes in temporal latencies between brain areas associated with voluntary visual spatial attention.
机译:使用功能磁共振成像(FMRI)来测量脑区域之间的功能连接具有识别与特定认知过程相关的神经网络。然而,FMRI信号不是神经活动的直接测量,而是表示血氧依赖性(粗体)信号。因此,两个脑区之间的相关大胆信号因此是神经,神经血管和血管耦合的组合。在这里,我们描述了用于隔离与特定认知过程相关的脑功能连通性的过程。在特定认知任务的性能期间计算在特定认知任务的性能期间计算相干幅度(测量两个时间序列之间的耦合强度)和相位(测量两个时间序列之间的时间延迟差异)。对两个条件的相干幅度和相位差的减去除去不作为认知任务的函数调制的相关粗体信号的源,导致与神经元活动的变化相关的功能连接的更直接测量。我们展示了这项任务减法过程的两个应用,一个用于测量与持续的视觉空间关注相关的耦合强度的变化,并且一个用于测量与自愿视觉空间关注相关的脑区域之间的时间延迟的变化。

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