The Clinical Hospital of Chengdu Brain Science Institute, MOE Key Lab for Neuroinformation, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.
School of Automation, Northwestern Polytechnical University, Xi'an, China.
Front Neural Circuits. 2019 May 15;13:36. doi: 10.3389/fncir.2019.00036. eCollection 2019.
The human cerebral cortex is highly convoluted as convex gyri and concave sulci. In the past decades, extensive studies have consistently revealed substantial differences between gyri and sulci in terms of genetics, anatomy, morphology, axonal fiber connections, and function. Although interesting findings have been reported to date to elucidate the functional difference between gyri and sulci, the temporal variability of functional activity, which could explain individual differences in learning and higher-order cognitive functions, and as well as differences in gyri and sulci, remains to be explored. The present study explored the temporal variability of cortical gyral-sulcal resting state functional activity and its association with fluid intelligence measures on the Human Connectome Project dataset. We found that the temporal variance of resting state fMRI BOLD signal was significantly larger in gyri than in sulci. We also found that the temporal variability of certain regions including middle frontal cortex, inferior parietal lobe and visual cortex was positively associated with fluid intelligence. Moreover, those regions were predominately located in gyri rather than in sulci. This study reports initial evidence for temporal variability difference of functional activity between gyri and sulci, and its association with fluid intelligence measures, and thus provides novel insights to understand the mechanism and functional relevance of gyri and sulci.
人类大脑皮层高度卷曲,形成凸面脑回和凹面脑沟。在过去的几十年中,广泛的研究一致揭示了脑回和脑沟在遗传学、解剖学、形态学、轴突纤维连接和功能方面的显著差异。尽管迄今为止已经有有趣的发现报告,以阐明脑回和脑沟之间的功能差异,但解释个体在学习和更高阶认知功能以及脑回和脑沟方面的差异的功能活动的时间可变性仍有待探索。本研究在人类连接组计划数据集上探索了皮质脑回-脑沟静息状态功能活动的时间可变性及其与流体智力测量的关系。我们发现,静息态 fMRI BOLD 信号的时间方差在脑回中明显大于在脑沟中。我们还发现,包括额中回、顶下小叶和视觉皮层在内的某些区域的时间可变性与流体智力呈正相关。此外,这些区域主要位于脑回中,而不是脑沟中。本研究报告了功能活动时间可变性在脑回和脑沟之间的差异及其与流体智力测量的关联的初步证据,从而为理解脑回和脑沟的机制和功能相关性提供了新的见解。