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海马体作为神经认知老化中远距离皮质变薄的结构和功能网络中枢。

The hippocampus as a structural and functional network epicentre for distant cortical thinning in neurocognitive aging.

机构信息

Nanyang Technological University, Psychology, School of Social Sciences, 48 Nanyang Avenue, Singapore City 639798, Singapore.

Nanyang Technological University, Psychology, School of Social Sciences, 48 Nanyang Avenue, Singapore City 639798, Singapore.

出版信息

Neurobiol Aging. 2024 Jul;139:82-89. doi: 10.1016/j.neurobiolaging.2024.04.004. Epub 2024 Apr 18.

Abstract

Alterations in grey matter (GM) and white matter (WM) are associated with memory impairment across the neurocognitive aging spectrum and theorised to spread throughout brain networks. Functional and structural connectivity (FC,SC) may explain widespread atrophy. We tested the effect of SC and FC to the hippocampus on cortical thickness (CT) of connected areas. In 419 (223 F) participants (age=73 ± 8) from the Alzheimer's Disease Neuroimaging Initiative, cortical regions associated with memory (Rey Auditory Verbal Learning Test) were identified using Lasso regression. Two structural equation models (SEM), for SC and resting-state FC, were fitted including CT areas, and SC and FC to the left and right hippocampus (LHIP,RHIP). LHIP (β=-0.150,p=<.001) and RHIP (β=-0.139,p=<.001) SC predicted left temporopolar/rhinal CT; RHIP SC predicted right temporopolar/rhinal CT (β=-0.191,p=<.001). LHIP SC predicted right fusiform/parahippocampal (β=-0.104,p=.011) and intraparietal sulcus/superior parietal CT (β=0.101,p=.028). Increased RHIP FC predicted higher left inferior parietal CT (β=0.132,p=.042) while increased LHIP FC predicted lower right fusiform/parahippocampal CT (β=-0.97; p=.023). The hippocampi may be epicentres for cortical thinning through disrupted connectivity.

摘要

灰质 (GM) 和白质 (WM) 的改变与神经认知老化谱中的记忆障碍有关,并被认为会在大脑网络中扩散。功能和结构连接 (FC,SC) 可能可以解释广泛的萎缩。我们测试了 SC 和 FC 对海马体的影响与皮质厚度 (CT) 的关联。在来自阿尔茨海默病神经影像学倡议的 419 名(223 名女性)参与者(年龄=73±8)中,使用套索回归识别与记忆相关的皮质区域( Rey 听觉言语学习测试)。拟合了两个结构方程模型(SEM),用于 SC 和静息状态 FC,包括 CT 区域,以及左、右海马体(LHIP、RHIP)的 SC 和 FC。LHIP(β=-0.150,p<.001)和 RHIP(β=-0.139,p<.001)的 SC 预测左颞极/梨状皮质 CT;RHIP SC 预测右颞极/梨状皮质 CT(β=-0.191,p<.001)。LHIP SC 预测右梭状回/海马旁回(β=-0.104,p=.011)和顶内沟/顶上小叶 CT(β=0.101,p=.028)。RHIP FC 的增加预测左顶下小叶 CT 较高(β=0.132,p=.042),而 LHIP FC 的增加预测右梭状回/海马旁回 CT 较低(β=-0.97;p=.023)。通过中断的连接,海马体可能是皮质变薄的中心。

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