陶氏病
神经退行性变
痴呆
疾病
生物标志物
认知功能衰退
医学
病理生理学
危险系数
阿尔茨海默病
阿尔茨海默病神经影像学倡议
神经科学
内科学
肿瘤科
心理学
生物
置信区间
生物化学
作者
Jieqiong Li,Jinghui Song,John Suckling,Yan‐Jiang Wang,Chuantao Zuo,Can Zhang,Jing Gao,Yuqiang Song,Anmu Xie,Lan Tan,Jin‐Tai Yu
标识
DOI:10.1016/j.neurobiolaging.2023.11.002
摘要
Based on the 'AT(N)' system, individuals with normal amyloid biomarkers but abnormal tauopathy or neurodegeneration biomarkers are classified as non-Alzheimer's disease (AD) pathologic change. This study aimed to assess the long-term clinical and cognitive trajectories of individuals with non-AD pathologic change among older adults without dementia, comparing them to those with normal AD biomarkers and AD pathophysiology. Analyzing Alzheimer's Disease Neuroimaging Initiative data, we evaluated clinical outcomes and conversion risk longitudinally using mixed effects models and multivariate Cox proportional hazard models. We found that compared to individuals with A-T-N-, those with abnormal tauopathy or neurodegeneration biomarkers (A-T + N-, A-T-N + , and A-T + N + ) had a faster rate of cognitive decline and disease progression. Individuals with A-T + N + had a faster rate of decline than those with A-T + N-. Additionally, in individuals with the same baseline tauopathy and neurodegeneration biomarker status, the presence of baseline amyloid could accelerate cognitive decline and clinical progression. These findings provide a foundation for future studies on non-AD pathologic change and its comparison with AD pathophysiology.
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