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Measuring interregional functional connectivity using coherence and partial coherence analyses of fMRI data.

机译:使用功能磁共振成像数据的相干性和部分相干性分析测量区域间功能连通性。

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Understanding functional connectivity within the brain is crucial to understanding neural function; even the simplest cognitive operations are supported by highly distributed neural circuits. We developed a novel method to measure task-related functional interactions between neural regions by applying coherence and partial coherence analyses to functional magnetic resonance imaging (fMRI) data. Coherence and partial coherence are spectral measures that estimate the linear time-invariant (LTI) relationship between time series. They can be used to generate maps of task-specific connectivity associated with seed regions of interest (ROIs). These maps may then be compared across tasks, revealing nodes with task-related changes of connectivity to the seed ROI. To validate the method, we applied it to an event-related fMRI data set acquired while subjects performed two sequence tapping tasks, one of which required more bimanual coordination. Areas showing increased functional connectivity with both tasks were the same as those showing increased activity. Furthermore, though there were no significant differences in mean activity between the two tasks, significant increases in interhemispheric coherence were found between the primary motor (M1) and premotor (PM) regions for the task requiring more bimanual coordination. This increase in interhemispheric connectivity is supported by other brain imaging techniques as well as patient studies.
机译:了解大脑内部的功能连通性对于理解神经功能至关重要。高度分散的神经回路甚至支持最简单的认知操作。我们开发了一种通过将相干和部分相干分析应用于功能磁共振成像(fMRI)数据来测量神经区域之间与任务相关的功能交互的新方法。相干和部分相干是频谱度量,用于估计时间序列之间的线性时不变(LTI)关系。它们可用于生成与目标种子区域(ROI)相关联的任务特定连接的地图。然后可以在任务之间比较这些图,从而揭示节点与种子ROI的连接性随任务相关的变化。为了验证该方法,我们将其应用于与事件相关的功能磁共振成像数据集,而受试者执行两项序列敲击任务,其中一项需要更多的双手协调。在两个任务中显示功能连接性增强的区域与显示活动增加的区域相同。此外,尽管两项任务的平均活动性没有显着差异,但是对于需要更多双手协调的任务,主要运动(M1)和运动前(PM)区域之间的半球间连贯性显着增加。其他大脑成像技术以及患者研究都支持这种半球间连接性的增加。

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