淋巴系统
脑脊液
蛛网膜下腔
淋巴系统
间质液
血管周围间隙
薄壁组织
病理
间隙
软脑膜
脑膜
心室系统
筛板
蛛网膜下腔出血
医学
解剖
麻醉
作者
Qiaoli Ma,Miriam Ries,Yann Decker,Andreas Müller,Chantal Riner,Arno Bücker,Klaus Faßbender,Michael Detmar,Steven T. Proulx
标识
DOI:10.1007/s00401-018-1916-x
摘要
The relationships between cerebrospinal fluid (CSF) and brain interstitial fluid are still being elucidated. It has been proposed that CSF within the subarachnoid space will enter paravascular spaces along arteries to flush through the parenchyma of the brain. However, CSF also directly exits the subarachnoid space through the cribriform plate and other perineural routes to reach the lymphatic system. In this study, we aimed to elucidate the functional relationship between CSF efflux through lymphatics and the potential influx into the brain by assessment of the distribution of CSF-infused tracers in awake and anesthetized mice. Using near-infrared fluorescence imaging, we showed that tracers quickly exited the subarachnoid space by transport through the lymphatic system to the systemic circulation in awake mice, significantly limiting their spread to the paravascular spaces of the brain. Magnetic resonance imaging and fluorescence microscopy through the skull under anesthetized conditions indicated that tracers remained confined to paravascular spaces on the surface of the brain. Immediately after death, a substantial influx of tracers occurred along paravascular spaces extending into the brain parenchyma. We conclude that under normal conditions a rapid CSF turnover through lymphatics precludes significant bulk flow into the brain.
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