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个体大脑老化差异:皮质-海马而非尾状核萎缩率的异质性。

Individual differences in brain aging: heterogeneity in cortico-hippocampal but not caudate atrophy rates.

机构信息

Department of Radiation Sciences (Radiology), Umeå University, 901 87 Umeå, Sweden.

Department of Integrative Medical Biology, Umeå University, 901 87 Umeå, Sweden.

出版信息

Cereb Cortex. 2023 Apr 25;33(9):5075-5081. doi: 10.1093/cercor/bhac400.

Abstract

It is well documented that some brain regions, such as association cortices, caudate, and hippocampus, are particularly prone to age-related atrophy, but it has been hypothesized that there are individual differences in atrophy profiles. Here, we document heterogeneity in regional-atrophy patterns using latent-profile analysis of 1,482 longitudinal magnetic resonance imaging observations. The results supported a 2-group solution reflecting differences in atrophy rates in cortical regions and hippocampus along with comparable caudate atrophy. The higher-atrophy group had the most marked atrophy in hippocampus and also lower episodic memory, and their normal caudate atrophy rate was accompanied by larger baseline volumes. Our findings support and refine models of heterogeneity in brain aging and suggest distinct mechanisms of atrophy in striatal versus hippocampal-cortical systems.

摘要

有充分的文献记载表明,一些大脑区域,如联合皮质、尾状核和海马体,特别容易出现与年龄相关的萎缩,但有人假设,萎缩模式存在个体差异。在这里,我们使用 1482 个纵向磁共振成像观察的潜在剖面分析来记录区域萎缩模式的异质性。结果支持 2 组解决方案,反映了皮质区域和海马体的萎缩率以及类似的尾状核萎缩率的差异。高萎缩组的海马体萎缩最为明显,情节记忆也较低,他们正常的尾状核萎缩率伴随着更大的基线体积。我们的发现支持并完善了大脑老化异质性的模型,并表明纹状体与海马-皮质系统的萎缩机制不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f00/10151879/b4ff70391457/bhac400f1.jpg

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