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年龄、载脂蛋白E4和阿尔茨海默病对海马亚区的选择性影响。

Selective effect of age, Apo e4, and Alzheimer's disease on hippocampal subfields.

作者信息

Mueller Susanne G, Weiner Michael W

机构信息

Center for Imaging of Neurodegenerative Diseases, Department of Veterans Affairs Medical Center, San Francisco, California 94121, USA.

出版信息

Hippocampus. 2009 Jun;19(6):558-64. doi: 10.1002/hipo.20614.

Abstract

Histopathological studies and animal models suggest that different physiological and pathophysiological processes exert different subfield specific effects on the hippocampus. High-resolution images at 4T depict details of the internal structure of the hippocampus allowing for in vivo volumetry of hippocampal subfields. The aims of this study were (1) to determine patterns of hippocampal subfield volume loss due to normal aging and Apo e4 carrier state, (2) to determine subfield specific volume losses due to preclinical (MCI) and clinical Alzheimer's disease (AD) and their modification due to age and Apo e4 carrier state. One hundred fifty seven subjects (119 cognitively healthy elderly controls, 20 MCI and 18 AD) were studied with a high resolution T2 weighted imaging sequence obtained at 4T aimed at the hippocampus. Apo e4 carrier state was known in 95 subjects (66 controls, 14 MCI, 15 AD). Subiculum (SUB), CA1, CA1-CA2 transition zone (CA1-2 transition), CA3- dentate gyrus (CA3&DG) were manually marked. Multiple linear regression analysis was used to test for effects of age, Apo e4 carrier state and effects of MCI and AD on different hippocampal subfields. Age had a significant negative effect on CA1 and CA3&DG volumes in controls (P < 0.05). AD had significantly smaller volumes of SUB, CA1, CA1-2 transition, and MCI had smaller CA1-2 transition volumes than controls (P < 0.05). Apo e4 carrier state was associated with volume loss in CA3&DG compared to non-Apo e4 carriers in healthy controls and AD. Based on these findings, we conclude that subfield volumetry provides regional selective information that allows to distinguish between different normal and pathological processes affecting the hippocampus and thus for an improved differential diagnosis of neurodegenerative diseases affecting the hippocampus.

摘要

组织病理学研究和动物模型表明,不同的生理和病理生理过程对海马体产生不同的亚区特异性影响。4T的高分辨率图像描绘了海马体内部结构的细节,从而能够对海马体亚区进行活体容积测量。本研究的目的是:(1)确定正常衰老和Apo e4携带者状态导致的海马体亚区体积损失模式;(2)确定临床前(轻度认知障碍,MCI)和临床阿尔茨海默病(AD)导致的亚区特异性体积损失,以及年龄和Apo e4携带者状态对其的影响。对157名受试者(119名认知健康的老年对照者、20名MCI患者和18名AD患者)进行了研究,采用在4T下获得的针对海马体的高分辨率T2加权成像序列。95名受试者(66名对照者、14名MCI患者、15名AD患者)的Apo e4携带者状态已知。手动标记了下托(SUB)、CA1、CA1-CA2过渡区(CA1-2过渡区)、CA3-齿状回(CA3&DG)。采用多元线性回归分析来测试年龄、Apo e4携带者状态以及MCI和AD对不同海马体亚区的影响。年龄对对照者的CA1和CA3&DG体积有显著的负面影响(P<0.05)。与对照者相比,AD患者的SUB、CA1、CA1-2过渡区体积显著更小,MCI患者的CA1-2过渡区体积更小(P<0.05)。与健康对照者和AD患者中的非Apo e4携带者相比,Apo e4携带者状态与CA3&DG体积损失有关。基于这些发现,我们得出结论,亚区容积测量提供了区域选择性信息,能够区分影响海马体的不同正常和病理过程,从而改善对影响海马体的神经退行性疾病的鉴别诊断。

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