白质
胼胝体
小胶质细胞
纤维束成像
神经科学
磁共振弥散成像
认知功能衰退
解剖
生物
扣带回(脑)
病理
磁共振成像
医学
炎症
痴呆
部分各向异性
疾病
放射科
免疫学
作者
Alisa Lubart,Amit Benbenishty,Hagai Har-Gil,Hadas Laufer,Amos Gdalyahu,Yaniv Assaf,Pablo Blinder
出处
期刊:Cerebral Cortex
[Oxford University Press]
日期:2020-08-29
卷期号:31 (1): 248-266
被引量:27
标识
DOI:10.1093/cercor/bhaa223
摘要
Abstract Loss of cognitive function with aging is a complex and poorly understood process. Recently, clinical research has linked the occurrence of cortical microinfarcts to cognitive decline. Cortical microinfarcts form following the occlusion of penetrating vessels and are considered to be restricted to the proximity of the occluded vessel. Whether and how such local events propagate and affect remote brain regions remain unknown. To this end, we combined histological analysis and longitudinal diffusion tensor imaging (DTI), following the targeted-photothrombotic occlusion of single cortical penetrating vessels. Occlusions resulted in distant tissue reorganization across the mouse brain. This remodeling co-occurred with the formation of a microglia/macrophage migratory path along subcortical white matter tracts, reaching the contralateral hemisphere through the corpus callosum and leaving a microstructural signature detected by DTI-tractography. CX3CR1-deficient mice exhibited shorter trail lengths, differential remodeling, and only ipsilateral white matter tract changes. We concluded that microinfarcts lead to brain-wide remodeling in a microglial CX3CR1-dependent manner.
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