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Coupling of functional connectivity and regional cerebral blood flow reveals a physiological basis for network hubs of the human brain

机译:功能连接性和局部脑血流量的耦合揭示了人脑网络枢纽的生理基础

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摘要

Human brain functional networks contain a few densely connected hubs that play a vital role in transferring information across regions during resting and task states. However, the relationship of these functional hubs to measures of brain physiology, such as regional cerebral blood flow (rCBF), remains incompletely understood. Here, we used functional MRI data of blood-oxygenation-level–dependent and arterial-spin–labeling perfusion contrasts to investigate the relationship between functional connectivity strength (FCS) and rCBF during resting and an N-back working-memory task. During resting state, functional brain hubs with higher FCS were identified, primarily in the default-mode, insula, and visual regions. The FCS showed a striking spatial correlation with rCBF, and the correlation was stronger in the default-mode network (DMN; including medial frontal-parietal cortices) and executive control network (ECN; including lateral frontal-parietal cortices) compared with visual and sensorimotor networks. Moreover, the relationship was connection–distance dependent; i.e., rCBF correlated stronger with long-range hubs than short-range ones. It is notable that several DMN and ECN regions exhibited higher rCBF per unit connectivity strength (rCBF/FCS ratio); whereas, this index was lower in posterior visual areas. During the working-memory experiment, both FCS–rCBF coupling and rCBF/FCS ratio were modulated by task load in the ECN and/or DMN regions. Finally, task-induced changes of FCS and rCBF in the lateral-parietal lobe positively correlated with behavioral performance. Together, our results indicate a tight coupling between blood supply and brain functional topology during rest and its modulation in response to task demands, which may shed light on the physiological basis of human brain functional connectome.
机译:人脑功能网络包含一些密集连接的集线器,这些集线器在休息和任务状态下跨区域传输信息时发挥着至关重要的作用。但是,这些功能枢纽与大脑生理指标(例如局部脑血流量(rCBF))的关系尚不完全清楚。在这里,我们使用了血液氧合水平依赖性和动脉旋转标记灌注对比的功能性MRI数据,以研究休息和N背工作记忆任务期间功能连接强度(FCS)和rCBF之间的关系。在静止状态下,可以识别出具有较高FCS的功能性大脑中枢,主要是在默认模式,绝缘岛和视觉区域。 FCS与rCBF表现出惊人的空间相关性,与视觉和感觉运动相比,默认模式网络(DMN;包括额中顶皮质)和执行控制网络(ECN;包括额中顶皮质)的相关性更强。网络。而且,这种关系是依赖于连接距离的。即,rCBF与远程集线器的关联性强于短距离集线器。值得注意的是,几个DMN和ECN区域显示出更高的每单位连接强度rCBF(rCBF / FCS比);而该指数在后视区较低。在工作记忆实验中,FCS-rCBF耦合和rCBF / FCS比率均受ECN和/或DMN区域中的任务负载的调节。最后,任务诱导的上顶叶FCS和rCBF的变化与行为表现成正相关。总之,我们的结果表明,在休息期间血液供应与大脑功能拓扑之间的紧密耦合及其对任务需求的响应调制,这可能会为人类大脑功能连接组的生理基础提供启示。

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