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常见参考区域对横断面和纵向[F]-AV-1451 PET 数据中区域 tau 模式的影响。

Influence of common reference regions on regional tau patterns in cross-sectional and longitudinal [F]-AV-1451 PET data.

机构信息

Department of Neurology and Neurological Sciences, Stanford University School of Medicine, Stanford, CA United States.

Helen Wills Neuroscience Institute, University of California Berkeley, Berkeley, CA United States.

出版信息

Neuroimage. 2021 Nov;243:118553. doi: 10.1016/j.neuroimage.2021.118553. Epub 2021 Sep 3.

Abstract

Tau PET has allowed for critical insights into in vivo patterns of tau accumulation and change in individuals early in the Alzheimer's disease (AD) continuum. A key methodological step in tau PET analyses is the selection of a reference region, but there is not yet consensus on the optimal region especially for longitudinal tau PET analyses. This study examines how reference region selection influences results related to disease stage at baseline and over time. Longitudinal flortaucipir ([18F]-AV1451) PET scans were examined using several common reference regions (e.g., eroded subcortical white matter, inferior cerebellar gray matter) in 62 clinically unimpaired amyloid negative (CU A-) individuals, 73 CU amyloid positive (CU A+) individuals, and 64 amyloid positive individuals with mild cognitive impairment (MCI A+) from the Alzheimer's Disease Neuroimaging Initiative (ADNI). Cross-sectionally, both reference regions resulted in robust group differences between CU A-, CU A+, and MCI A+ groups, along with significant associations with CSF phosphorylated tau (pTau-181). However, these results were more focally specific and akin to Braak Staging when using eroded white matter, whereas effects with inferior cerebellum were globally distributed across most cortical regions. Longitudinally, utilization of eroded white matter revealed significant accumulation greater than zero across more regions whereas change over time was diminished using inferior cerebellum. Interestingly, the inferior temporal target region seemed most robust to reference region selection with expected cross-sectional and longitudinal signal across both reference regions. With few exceptions, baseline tau did not significantly predict longitudinal change in tau in the same region regardless of reference region. In summary, reference region selection deserves further evaluation as this methodological step may lead to disparate findings. Inferior cerebellar gray matter may be more sensitive to cross-sectional flortaucipir differences, whereas eroded subcortical white matter may be more sensitive for longitudinal analyses examining regional patterns of change.

摘要

Tau PET 使人们能够深入了解阿尔茨海默病(AD)连续体中个体 Tau 积累和变化的体内模式。Tau PET 分析的关键方法步骤是选择参考区域,但对于纵向 Tau PET 分析,特别是对于纵向 Tau PET 分析,还没有共识。本研究探讨了参考区域选择如何影响与基线时疾病阶段和随时间变化相关的结果。使用几种常见的参考区域(例如,侵蚀性皮质下白质、小脑下灰质)检查了 62 名临床无症状淀粉样阴性(CU A-)个体、73 名 CU 淀粉样阳性(CU A+)个体和 64 名 ADNI 中轻度认知障碍(MCI A+)的淀粉样阳性个体的纵向 flortaucipir ([18F]-AV1451) PET 扫描。横截面研究结果显示,在 CU A-、CU A+和 MCI A+组之间,两种参考区域均存在明显的组间差异,与 CSF 磷酸化 Tau(pTau-181)有显著相关性。然而,与使用侵蚀性白质相比,这些结果更具针对性,类似于 Braak 分期,而使用小脑下灰质的结果则分布在皮质的大部分区域。纵向研究结果显示,使用侵蚀性白质的 Tau 累积量明显大于零,而使用小脑下灰质的 Tau 变化则随时间减少。有趣的是,下颞部目标区域似乎对参考区域选择具有最强的鲁棒性,在两种参考区域中均具有预期的横截面和纵向信号。除了少数例外,无论使用哪种参考区域,基线 Tau 均不能显著预测同一区域的纵向 Tau 变化。总之,参考区域的选择值得进一步评估,因为这一方法步骤可能会导致不同的发现。小脑下灰质可能对 flortaucipir 的横截面差异更敏感,而侵蚀性皮质下白质可能对纵向分析研究区域变化模式更敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4397/8785682/493bc16086aa/nihms-1771427-f0001.jpg

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