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The role of diffusion tensor imaging in detecting microstructural changes in prodromal Alzheimer's disease

机译:弥散张量成像在检测前驱性阿尔茨海默氏病微结构变化中的作用

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The MRI technique diffusion tensor imaging (DTI) is reviewed along with microstructural changes associated with prodromal Alzheimer's disease (AD) as a potential biomarker for clinical applications. The prodromal stage of AD is characterized by mild cognitive impairment (MCI), representing a transitional state between normal aging and AD. Microstructural abnormalities on DTI are promising in vivo biomarkers of gray and white matter changes associated with the progression of AD pathology. Elevated mean diffusivity and decreased fractional anisotropy are consistently found in prodromal AD, and even in cognitively normal elderly who progress to MCI. However, quality of parameter maps may be affected by artifacts of motion, susceptibility, and eddy current-induced distortions. The DTI maps are typically analyzed by region-of-interest or voxel-based analytic techniques such as tract-based spatial statistics. DTI-based index of diffusivity is complementary to macrostructural gray matter changes in the hippocampus in detecting prodromal AD. Breakdown of structural connectivity measured with DTI may impact cognitive performance during early AD. Furthermore, assessment of hippocampal connections may help in understanding the cerebral organization and remodeling associated with treatment response.
机译:回顾了MRI技术扩散张量成像(DTI)以及与前驱性阿尔茨海默氏病(AD)相关的微结构变化,将其作为临床应用的潜在生物标记。 AD的前驱阶段特征在于轻度认知障碍(MCI),代表正常衰老和AD之间的过渡状态。 DTI的微结构异常有望成为与AD病理学进展相关的灰白质变化的体内生物标志物。在前驱性AD,甚至发展为MCI的认知正常的老年人中,均发现平均扩散率升高,分数各向异性降低。但是,参数图的质量可能受到运动伪影,磁化率和涡流感应失真的影响。通常,通过感兴趣区域或基于体素的分析技术(例如基于区域的空间统计)来分析DTI映射。基于DTI的扩散指数是检测前驱性AD时海马宏观结构灰质变化的补充。用DTI测量的结构连通性的破坏可能会影响AD早期的认知表现。此外,评估海马连接可能有助于了解与治疗反应相关的大脑组织和重塑。

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