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性别对大脑半球白质网络可控性的影响。

Gender effects on the controllability of hemispheric white matter networks.

机构信息

College of Information and Computer, Taiyuan University of Technology, No. 79, Yingze West Street, Taiyuan, Shanxi, 030024, China.

出版信息

Cereb Cortex. 2023 Feb 20;33(5):1643-1658. doi: 10.1093/cercor/bhac162.

Abstract

Male and female adults exhibited significant group differences in brain white matter (WM) asymmetry and WM network controllability. However, gender differences in controllability of hemispheric WM networks between males and females remain to be determined. Based on 1 principal atlas and 1 replication atlas, this work characterized the average controllability (AC) and modal controllability (MC) of hemispheric WM network based on 1 principal dataset and 2 replication datasets. All results showed that males had higher AC of left hemispheric networks than females. And significant hemispheric asymmetry was revealed in regional AC and MC. Furthermore, significant gender differences in the AC asymmetry were mainly found in regions lie in the frontoparietal network, and the MC asymmetry was found in regions involving auditory and emotion process. Finally, we found significant associations between regional controllability and cognitive features. Taken together, this work could provide a novel perspective for understanding gender differences in hemispheric WM asymmetry and cognitive function between males and females.

摘要

男性和女性成年人在大脑白质(WM)不对称和 WM 网络可控性方面表现出显著的组间差异。然而,男性和女性之间半球 WM 网络可控性的性别差异仍有待确定。基于 1 个主图谱和 1 个复制图谱,本研究基于 1 个主数据集和 2 个复制数据集,描述了半球 WM 网络的平均可控性(AC)和模态可控性(MC)。所有结果均表明,男性左侧半球网络的 AC 高于女性。并且在区域 AC 和 MC 中显示出显著的半球不对称性。此外,在涉及额顶网络的区域中,主要发现了 AC 不对称的显著性别差异,而在涉及听觉和情绪处理的区域中则发现了 MC 不对称。最后,我们发现区域可控性与认知特征之间存在显著关联。综上所述,本研究为理解男性和女性之间半球 WM 不对称和认知功能的性别差异提供了新的视角。

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