School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, 200030, China.
Sci Rep. 2016 May 27;6:26976. doi: 10.1038/srep26976.
Functional connectivity (FC), obtained from functional magnetic resonance imaging (fMRI), brings insights into the functional organization of the brain. Recently, rich and complex behaviour of brain has been revealed by the dynamic fluctuation of FC, which had previously been regarded as confounding 'noise'. While the dynamics of long-distance, inter-regional FC has been extensively studied, the dynamics of local FC within a few millimetres in space remains largely unexplored. In this study, the local FC was depicted by regional homogeneity (ReHo), and the dynamics of local FC was obtained using sliding windows method. We observed a robust positive correlation between ReHo and its temporal variability, which was shown to be an intrinsic feature of the brain rather than a pure stochastic effect. Furthermore, fluctuation of ReHo was associated with global functional organization: (i) brain regions with higher centrality of inter-regional FC tended to possess higher ReHo variability; (ii) coherence of ReHo fluctuation was higher within brain's functional modules. Finally, we observed alteration of ReHo variability during a motor task compared with resting-state. Our findings associated the temporal fluctuation of ReHo with brain function, opening up the possibility of dynamic local FC study in the future.
功能连接(FC),来源于功能磁共振成像(fMRI),为大脑的功能组织提供了深入的见解。最近,FC 的动态波动揭示了丰富而复杂的大脑行为,而这些波动以前被认为是混杂的“噪声”。尽管远距离、区域间 FC 的动力学已经得到了广泛的研究,但几毫米空间内的局部 FC 的动力学仍然在很大程度上未被探索。在这项研究中,局部 FC 通过区域同质性(ReHo)来描述,并且使用滑动窗口方法获得局部 FC 的动力学。我们观察到 ReHo 与其时间变异性之间存在稳健的正相关,这表明它是大脑的固有特征,而不是纯粹的随机效应。此外,ReHo 的波动与全局功能组织有关:(i)区域间 FC 中心性较高的脑区往往具有较高的 ReHo 变异性;(ii)ReHo 波动的相干性在大脑的功能模块内更高。最后,我们观察到在运动任务期间 ReHo 变异性与静息状态相比发生了改变。我们的研究结果将 ReHo 的时间波动与大脑功能联系起来,为未来动态局部 FC 研究开辟了可能性。