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Baseline and longitudinal changes in cortical thickness and hippocampal volume predict cognitive decline.

作者信息

Chen Gengsheng, McKay Nicole S, Gordon Brian A, Joseph-Mathurin Nelly, Liu Jingxia, Schindler Suzanne E, Hassenstab Jason, Doering Stephanie, Aschenbrenner Andrew J, Wang Qing, LaMontagne Pamela J, Keefe Sarah J, Massoumzadeh Parinaz, Cruchaga Carlos, Xiong Chengjie, Morris John C, Benzinger Tammie Ls

机构信息

Mallinckrodt Institute of Radiology, Washington University in St Louis School of Medicine, St Louis, MO, USA.

Knight Alzheimer's Disease Research Center, Washington University in St Louis School of Medicine, St Louis, MO, USA.

出版信息

J Alzheimers Dis. 2025 Aug;106(4):1452-1462. doi: 10.1177/13872877251352202. Epub 2025 Jul 17.

DOI:10.1177/13872877251352202
PMID:40676867
Abstract

BackgroundAs we transition to disease-modifying treatment for Alzheimer's disease (AD), identifying individuals most at risk for future cognitive decline is crucial. Amyloid PET, cerebrospinal fluid and more recently blood-based biomarkers can identify the first stage of AD. However, changes detectable by PiB-PET may precede the onset of the dementia by 20-30 years. MRI is a widely available tool for detecting longitudinal changes in brain structure, such as cortical thickness and hippocampal volume and may provide additional insight into which patients are at greatest risk to develop cognitive decline.ObjectiveTo determine how well the hippocampal volume and cortical thickness, without specific AD biomarkers, can predict cognitive decline.MethodsMRI data from 344 participants (cognitively unimpaired or mild cognitive impairment, age 50-86) were used to evaluate if changes in cortical thickness and hippocampal volume predict cognitive decline, measured by a global cognitive composite score. A random coefficient model was employed to calculate longitudinal changes in cortical thickness and hippocampal volume and assess their ability to predict cognitive decline.ResultsBaseline cortical thickness as well as hippocampal volume predicted cognitive decline, regardless of baseline cognitive status. In individuals unimpaired at baseline, decreases in cortical thickness and hippocampal volume independently predicted cognitive decline. For participants with baseline mild impairment, decreases in hippocampal volume predicted further cognitive decline.ConclusionsThese findings indicate that MRI could serve as an effective tool for identifying individuals at elevated risk of cognitive decline, a growing public health concern as global populations continue to age.

摘要

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