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Paravascular spaces at the brain surface: Low resistance pathways for cerebrospinal fluid flow

机译:脑表面血管旁空间:脑脊液流动的低阻力途径

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摘要

Clearance of waste products from the brain is of vital importance. Recent publications suggest a potential clearance mechanism via paravascular channels around blood vessels. Arterial pulsations might provide the driving force for paravascular flow, but its flow pattern remains poorly characterized. In addition, the relationship between paravascular flow around leptomeningeal vessels and penetrating vessels is unclear. In this study, we determined blood flow and diameter pulsations through a thinned-skull cranial window. We observed that microspheres moved preferentially in the paravascular space of arteries rather than in the adjacent subarachnoid space or around veins. Paravascular flow was pulsatile, generated by the cardiac cycle, with net antegrade flow. Confocal imaging showed microspheres distributed along leptomeningeal arteries, while their presence along penetrating arteries was limited to few vessels. These data suggest that paravascular spaces around leptomeningeal arteries form low resistance pathways on the surface of the brain that facilitate cerebrospinal fluid flow.
机译:从大脑清除废物非常重要。最近的出版物提出了通过血管周围血管旁通道的潜在清除机制。动脉搏动可能提供了血管旁血流的驱动力,但其血流形态仍然很差。此外,尚不清楚围绕软脑膜血管的血管旁血流和穿透血管之间的关系。在这项研究中,我们确定了通过薄颅颅窗的血流量和直径脉动。我们观察到微球优先在动脉血管旁空间移动,而不是在相邻的蛛网膜下腔或静脉周围移动。脉旁血流是搏动性的,由心动周期产生,净顺行血流。共聚焦成像显示微球沿软脑膜动脉分布,而它们沿穿透性动脉的存在仅限于少数血管。这些数据表明,软脑膜动脉周围的血管旁空间在脑表面形成了低阻力通路,促进了脑脊液的流动。

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