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Handedness- and Brain Size-Related Efficiency Differences in Small-World Brain Networks: A Resting-State Functional Magnetic Resonance Imaging Study

机译:小世界脑网络中与手性和大脑大小有关的效率差异:静止状态功能磁共振成像研究

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摘要

The human brain has been described as a complex network, which integrates information with high efficiency. However, the relationships between the efficiency of human brain functional networks and handedness and brain size remain unclear. Twenty-one left-handed and 32 right-handed healthy subjects underwent a resting-state functional magnetic resonance imaging scan. The whole brain functional networks were constructed by thresholding Pearson correlation matrices of 90 cortical and subcortical regions. Graph theory-based methods were employed to further analyze their topological properties. As expected, all participants demonstrated small-world topology, suggesting a highly efficient topological structure. Furthermore, we found that smaller brains showed higher local efficiency, whereas larger brains showed higher global efficiency, reflecting a suitable efficiency balance between local specialization and global integration of brain functional activity. Compared with right-handers, significant alterations in nodal efficiency were revealed in left-handers, involving the anterior and median cingulate gyrus, middle temporal gyrus, angular gyrus, and amygdala. Our findings indicated that the functional network organization in the human brain was associated with handedness and brain size.
机译:人脑已被描述为一个复杂的网络,可以高效地集成信息。但是,人类大脑功能网络的效率与惯用性和大脑大小之间的关系仍然不清楚。二十一个左撇子和32个右撇子的健康受试者进行了静止状态功能磁共振成像扫描。全脑功能网络是通过对90个皮质和皮质下区域的Pearson相关矩阵进行阈值构建的。基于图论的方法被用来进一步分析其拓扑特性。正如预期的那样,所有参与者都展示了小世界拓扑,表明高效的拓扑结构。此外,我们发现较小的大脑显示较高的局部效率,而较大的大脑显示较高的全局效率,反映出局部专业化与大脑功能活动的全局整合之间的适当效率平衡。与右撇子相比,左撇子节点效率显着改变,涉及前扣带回和正扣带回,中颞回,角回和杏仁核。我们的发现表明,人脑中的功能网络组织与惯用性和大脑大小有关。

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