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Functional Magnetic Resonance Imaging Phase Synchronization as a Measure of Dynamic Functional Connectivity

机译:功能磁共振成像相位同步作为动态功能连接的一种量度

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摘要

Functional brain activity and connectivity have been studied by calculating intersubject and seed-based correlations of hemodynamic data acquired with functional magnetic resonance imaging (fMRI). To inspect temporal dynamics, these correlation measures have been calculated over sliding time windows with necessary restrictions on the length of the temporal window that compromises the temporal resolution. Here, we show that it is possible to increase temporal resolution by using instantaneous phase synchronization (PS) as a measure of dynamic (time-varying) functional connectivity. We applied PS on an fMRI dataset obtained while 12 healthy volunteers watched a feature film. Narrow frequency band (0.04–0.07 Hz) was used in the PS analysis to avoid artifactual results. We defined three metrics for computing time-varying functional connectivity and time-varying intersubject reliability based on estimation of instantaneous PS across the subjects: (1) seed-based PS, (2) intersubject PS, and (3) intersubject seed-based PS. Our findings show that these PS-based metrics yield results consistent with both seed-based correlation and intersubject correlation methods when inspected over the whole time series, but provide an important advantage of maximal single-TR temporal resolution. These metrics can be applied both in studies with complex naturalistic stimuli (e.g., watching a movie or listening to music in the MRI scanner) and more controlled (e.g., event-related or blocked design) paradigms. A MATLAB toolbox FUNPSY () is openly available for using these metrics in fMRI data analysis.
机译:通过计算受试者间和基于种子的功能磁共振成像(fMRI)采集的血液动力学数据的相关性,研究了功能性大脑活动和连通性。为了检查时间动态,已经在滑动时间窗口上计算了这些相关性,对时间窗口的长度进行了必要的限制,从而损害了时间分辨率。在这里,我们表明可以通过使用瞬时相位同步(PS)作为动态(时变)功能连接的度量来提高时间分辨率。我们将PS应用于在12名健康志愿者观看故事片时获得的fMRI数据集。 PS分析中使用了窄频带(0.04-0.07 Hz),以避免人为结果。我们基于对受试者的瞬时PS的估计,定义了用于计算随时间变化的功能连接性和随时间变化的受试者间可靠性的三个指标:(1)基于种子的PS,(2)基于受试者间的PS,以及(3)基于受试者间的基于种子的PS 。我们的发现表明,在整个时间序列中进行检查时,这些基于PS的度量产生的结果与基于种子的相关性和对象间相关性方法相一致,但提供了最大的单TR时间分辨率的重要优势。这些度量既可以应用于具有复杂自然主义刺激的研究(例如,在MRI扫描器中观看电影或听音乐),也可以应用于受控制程度更高的(例如与事件相关或受阻的设计)范例。 MATLAB工具箱FUNPSY()可公开用于在fMRI数据分析中使用这些指标。

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