Hippocampal subfield imaging and fractional anisotropy show parallel changes in Alzheimer's disease tau progression using simultaneous tau‐PET/MRI at 3T
作者:Mackenzie Carlson, Tyler N. Toueg, Mohammad Mehdi Khalighi, Jessa B. Castillo, Bin Shen, Emily C. Azevedo, Phillip DiGiacomo, Nicole Mouchawar, Gustavo Chau, Greg Zaharchuk, Michelle L. James, Elizabeth C. Mormino, Michael Zeineh · 发表于:Alzheimer s & Dementia Diagnosis Assessment & Disease Monitoring · 年份:2021 · DOI:10.1002/dad2.12218 · 被引用次数:22 · 研究领域:Dementia and Cognitive Impairment Research、Alzheimer's disease research and treatments、Advanced Neuroimaging Techniques and Applications
INTRODUCTION: Alzheimer's disease (AD) is the most common form of dementia, characterized primarily by abnormal aggregation of two proteins, tau and amyloid beta. We assessed tau pathology and white matter connectivity changes in subfields of the hippocampus simultaneously in vivo in AD. METHODS: F-PI-2620 tau positron emission tomography/3-Tesla magnetic resonance imaging and automated segmentation. RESULTS: We observed extensive tau elevation in the entorhinal/perirhinal regions, intermediate tau elevation in cornu ammonis 1/subiculum, and an absence of tau elevation in the dentate gyrus, relative to controls. Diffusion tensor imaging showed parahippocampal gyral fractional anisotropy was lower in AD and mild cognitive impairment compared to controls and strongly correlated with early tau accumulation in the entorhinal and perirhinal cortices. DISCUSSION: F-PI2620 binding in hippocampus subfields, accompanied by diffusion and volume metrics, to be valuable markers of AD.