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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Cerebrospinal fluid bulk flow is driven by the cardiac cycle
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Cerebrospinal fluid bulk flow is driven by the cardiac cycle

机译:APS-APS流体动力学部门第70届年会-活动-脑脊液总体流量由心动周期驱动

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摘要

Recent discoveries have uncovered a cerebrospinal fluid (CSF) transport system in the perivascular spaces (PVS) of the mammalian brain which clears excess extracellular fluid and protein waste products. The oscillatory pattern of CSF flow has long been attributed to arterial pulsations due to cardiac contractility but limitations in imaging techniques have impeded quantitative measurement of flow rates within the PVS. In this talk, we describe quantitative measurements from the first ever direct imaging of CSF flow in the PVS of a mouse brain. We perform particle tracking velocimetry to obtain time-resolved velocity measurements. To identify the cardiac and/or respiratory dependence of the flow, while imaging, we simultaneously record the mouse's electrocardiogram and respiration. Our measurements conclusively indicate that CSF pulsatility in the arterial PVS is directly driven by the cardiac cycle and not by the respiratory cycle or cerebral vasomotion. These results offer a substantial step forward in understanding bulk flow of CSF in the mammalian brain and may have important implications related to neurodegenerative diseases.
机译:最近的发现在哺乳动物脑的血管周间隙(PVS)中发现了一种脑脊液(CSF)转运系统,该系统清除了过多的细胞外液和蛋白质废物。长期以来,由于心脏收缩,CSF流动的振荡模式归因于动脉搏动,但成像技术的局限性阻碍了PVS内流速的定量测量。在本次演讲中,我们描述了来自小鼠脑PVS中脑脊液流量的首次直接成像的定量测量。我们执行粒子跟踪测速,以获得时间分辨的速度测量值。为了在成像时确定心脏和/或呼吸的依赖性,我们同时记录了小鼠的心电图和呼吸。我们的测量结果最终表明,动脉PVS中的CSF搏动直接由心动周期驱动,而不是由呼吸周期或脑血管运动驱动。这些结果为理解哺乳动物脑中脑脊液的大量流动提供了实质性的进步,并且可能与神经退行性疾病有关。

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