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右侧角回的灰质体积与随年龄增长的多感觉整合的不同模式相关。

Gray matter volume in the right angular gyrus is associated with differential patterns of multisensory integration with aging.

机构信息

School of Psychology and Institute of Neuroscience, Trinity College Dublin, Dublin, Ireland; The Irish Longitudinal Study on Ageing, Trinity College Dublin, Dublin, Ireland.

School of Psychology and Institute of Neuroscience, Trinity College Dublin, Dublin, Ireland.

出版信息

Neurobiol Aging. 2021 Apr;100:83-90. doi: 10.1016/j.neurobiolaging.2020.12.004. Epub 2020 Dec 25.

Abstract

Multisensory perception might provide an important marker of brain function in aging. However, the cortical structures supporting multisensory perception in aging are poorly understood. In this study, we compared regional gray matter volume in a group of middle-aged (n = 101; 49-64 years) and older (n = 116; 71-87 years) adults from The Irish Longitudinal Study on Aging using voxel-based morphometry. Participants completed a measure of multisensory integration, the sound-induced flash illusion, and were grouped as per their illusion susceptibility. A significant interaction was observed in the right angular gyrus; in the middle-aged group, larger gray matter volume corresponded to stronger illusion perception while in older adults larger gray matter corresponded to less illusion susceptibility. This interaction remained significant even when controlling for a range of demographic, sensory, cognitive, and health variables. These findings show that multisensory integration is associated with specific structural differences in the aging brain and highlight the angular gyrus as a possible "cross-modal hub" associated with age-related change in multisensory perception.

摘要

多感官知觉可能为衰老大脑功能提供一个重要的标志物。然而,支持衰老过程中多感官知觉的皮质结构仍未被充分理解。在这项研究中,我们使用基于体素的形态测量学比较了爱尔兰老龄化纵向研究中的一组中年(n=101;49-64 岁)和老年(n=116;71-87 岁)成年人的区域灰质体积。参与者完成了一项多感官整合测量,即声音诱导的闪光错觉,并根据他们的错觉易感性进行分组。在右侧角回观察到显著的交互作用;在中年组中,较大的灰质体积与较强的错觉感知相关,而在老年组中,较大的灰质体积与较弱的错觉易感性相关。即使在控制了一系列人口统计学、感觉、认知和健康变量后,这种交互作用仍然显著。这些发现表明,多感官整合与衰老大脑中的特定结构差异有关,并强调角回可能是与多感官知觉相关的年龄相关变化的一个“跨模态枢纽”。

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