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Structural and functional biomarkers of prodromal Alzheimers disease: a high-dimensional pattern classification study

机译:前驱性阿尔茨海默氏病的结构和功能生物标志物:高维模式分类研究

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摘要

This work builds upon previous studies that reported high sensitivity and specificity in classifying individuals with mild cognitive impairment (MCI), which is often a prodromal phase of Alzheimer's Disease (AD), via pattern classification of MRI scans. The current study integrates MRI and PET 15O water scans from 30 participants in the Baltimore Longitudinal Study of Aging, and tests the hypothesis that joint evaluation of structure and function can yield higher classification accuracy than either alone. Classification rates of up to 100% accuracy were achieved via leave-one-out cross validation, whereas conservative estimates of generalization performance in new scans, evaluated via bagging cross-validation, yielded an area under the receiver operating characteristic (ROC) curve equal to 0.978 (97.8%), indicating excellent diagnostic accuracy. Spatial maps of regions determined to contribute the most to the classification implicated many temporal, prefrontal, orbitofrontal, and parietal regions. Detecting complex patterns of brain abnormality in early stages of cognitive impairment has pivotal importance for the detection and management of AD.
机译:这项工作建立在以前的研究的基础上,该研究报告了通过对MRI进行模式分类,对轻度认知障碍(MCI)进行分类的人具有较高的敏感性和特异性,MCI通常是阿尔茨海默氏病(AD)的前驱期。当前的研究整合了来自巴尔的摩纵向老龄化研究的30名参与者的MRI和PET 15 O水扫描,并检验了结构和功能的联合评估可以产生比单独的任何一种更高的分类准确性的假设。通过留一法交叉验证实现了高达100%准确性的分类率,而通过装袋交叉验证对新扫描中的泛化性能进行保守估计,得出的接收器工作特性(ROC)曲线下面积等于0.978(97.8%),表明诊断准确性极佳。确定对分类贡献最大的区域的空间图涉及许多时间,前额叶,眶额叶和顶叶区域。在认知障碍的早期阶段检测复杂的脑部异常模式对于AD的检测和管理至关重要。

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