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白质完整性和网络拓扑属性的改变与老年人整体运动感知能力的下降有关。

Alterations in white matter integrity and network topological properties are associated with a decrease in global motion perception in older adults.

作者信息

Yan Shizhen, Zhang Yuping, Yin Xiaojuan, Chen Juntao, Zhu Ziliang, Jin Hua, Li Han, Yin Jianzhong, Jiang Yunpeng

机构信息

Faculty of Psychology, Tianjin Normal University, Tianjin, China.

Medicine School of Rehabilitation, Henan University of Chinese Medicine, Zhengzhou, China.

出版信息

Front Aging Neurosci. 2023 Mar 9;15:1045263. doi: 10.3389/fnagi.2023.1045263. eCollection 2023.

Abstract

Previous studies have mainly explored the effects of structural and functional aging of cortical regions on global motion sensitivity in older adults, but none have explored the structural white matter (WM) substrates underlying the age-related decrease in global motion perception (GMP). In this study, random dot kinematogram and diffusion tensor imaging were used to investigate the effects of age-related reductions in WM fiber integrity and connectivity across various regions on GMP. We recruited 106 younger adults and 94 older adults and utilized both tract-based spatial statistics analysis and graph theoretical analysis to comprehensively investigate group differences in WM microstructural and network connections between older and younger adults at the microscopic and macroscopic levels. Moreover, partial correlation analysis was used to explore the relationship between alterations in WM and the age-related decrease in GMP. The results showed that decreased GMP in older adults was related to decreased fractional anisotropy (FA) of the inferior frontal-occipital fasciculus, inferior longitudinal fasciculus, anterior thalamic radiation, superior longitudinal fasciculus, and cingulum cingulate gyrus. Decreased global efficiency of the WM structural network and increased characteristic path length were closely associated with decreased global motion sensitivity. These results suggest that the reduced GMP in older adults may stem from reduced WM integrity in specific regions of WM fiber tracts as well as decreased efficiency of information integration and communication between distant cortical regions, supporting the "disconnection hypothesis" of cognitive aging.

摘要

以往的研究主要探讨了皮质区域的结构和功能老化对老年人整体运动敏感性的影响,但尚未有人探究与年龄相关的整体运动感知(GMP)下降背后的白质(WM)结构基础。在本研究中,我们使用随机点运动图和扩散张量成像来研究与年龄相关的不同区域WM纤维完整性和连通性降低对GMP的影响。我们招募了106名年轻成年人和94名老年人,并利用基于体素的空间统计学分析和图论分析,从微观和宏观层面全面研究老年人和年轻人在WM微观结构和网络连接方面的组间差异。此外,我们还使用偏相关分析来探究WM变化与年龄相关的GMP下降之间的关系。结果表明,老年人GMP降低与额枕下束、下纵束、丘脑前辐射、上纵束和扣带束的分数各向异性(FA)降低有关。WM结构网络的全局效率降低和特征路径长度增加与整体运动敏感性降低密切相关。这些结果表明,老年人GMP降低可能源于WM纤维束特定区域的WM完整性降低,以及远距离皮质区域之间信息整合和交流效率降低,支持了认知老化的“失连接假说”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f6c/10034108/54e09fc508f5/fnagi-15-1045263-g001.jpg

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