脑淀粉样血管病
匹兹堡化合物B
磁共振成像
医学
神经影像学
白质疏松症
病理
额颞叶变性
高强度
发病机制
淀粉样蛋白(真菌学)
认知障碍
疾病
心理学
神经科学
痴呆
放射科
精神科
失智症
作者
Jae‐Hyun Park,Sang Won Seo,Changsoo Kim,Geon Ha Kim,Hyun Jin Noh,Sung Tae Kim,Kichang Kwak,Uicheul Yoon,Jong Min Lee,Jong Weon Lee,Ji Soo Shin,Chi Hun Kim,Young Noh,Hanna Cho,Hee‐Jin Kim,Cindy W. Yoon,Seung Jun Oh,Jae Seung Kim,Yearn Seong Choe,Kyung‐Han Lee
摘要
Objective Cerebral microbleeds (CMBs) are a neuroimaging marker of small vessel disease (SVD) with relevance for understanding disease mechanisms in cerebrovascular disease, cognitive impairment, and normal aging. It is hypothesized that lobar CMBs are due to cerebral amyloid angiopathy (CAA) and deep CMBs are due to subcortical ischemic SVD. We tested this hypothesis using structural magnetic resonance imaging (MRI) markers of subcortical SVD and in vivo imaging of amyloid in patients with cognitive impairment. Methods We included 226 patients: 89 with Alzheimer disease–related cognitive impairment (ADCI) and 137 with subcortical vascular cognitive impairment (SVCI). All subjects underwent amyloid imaging with [ 11 C] Pittsburgh compound B (PiB) positron emission tomography, and MRI to detect CMBs and markers of subcortical SVD, including the volume of white matter hyperintensities (WMH) and the number of lacunes. Results Parietal and occipital lobar CMBs counts were higher in PiB + ADCI with moderate WMH than PiB + ADCI with minimal WMH, whereas PiB − patients with SVCI (ie, “pure” SVCI) showed both lobar and deep CMBs. In multivariate analyses of the whole cohort, WMH volume and lacuna counts were positively associated with both lobar and deep CMBs, whereas amyloid burden (PiB) was only associated with lobar CMBs. There was an interaction between lacuna burden and PiB retention on lobar (but not deep) CMBs ( p <0.001). Interpretation Our findings suggest that although deep CMBs are mainly linked to subcortical SVD, both subcortical SVD and amyloid‐related pathologies (eg, CAA) contribute to the pathogenesis of lobar CMBs, at least in subjects with mixed lobar and deep CMBs. Furthermore, subcortical SVD and amyloid‐related pathologies interact to increase the risk of lobar CMBs. Ann Neurol 2013;73:584–593
科研通智能强力驱动
Strongly Powered by AbleSci AI