首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Paravascular channels cisterns and the subarachnoid space in the rat brain: A single compartment with preferential pathways
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Paravascular channels cisterns and the subarachnoid space in the rat brain: A single compartment with preferential pathways

机译:大鼠大脑中的血管旁通道水箱和蛛网膜下腔:具有优先通路的单个腔室

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摘要

Recent evidence suggests an extensive exchange of fluid and solutes between the subarachnoid space and the brain interstitium, involving preferential pathways along blood vessels. We studied the anatomical relations between brain vasculature, cerebrospinal fluid compartments, and paravascular spaces in male Wistar rats. A fluorescent tracer was infused into the cisterna magna, without affecting intracranial pressure. Tracer distribution was analyzed using a 3D imaging cryomicrotome, confocal microscopy, and correlative light and electron microscopy. We found a strong 3D colocalization of tracer with major arteries and veins in the subarachnoid space and large cisterns, attributed to relatively large subarachnoid space volumes around the vessels. Confocal imaging confirmed this colocalization and also revealed novel cisternal connections between the subarachnoid space and ventricles. Unlike the vessels in the subarachnoid space, penetrating arteries but not veins were surrounded by tracer. Correlative light and electron microscopy images indicated that this paravascular space was located outside of the endothelial layer in capillaries and just outside of the smooth muscle cells in arteries. In conclusion, the cerebrospinal fluid compartment, consisting of the subarachnoid space, cisterns, ventricles, and para-arteriolar spaces, forms a continuous and extensive network that surrounds and penetrates the rat brain, in which mixing may facilitate exchange between interstitial fluid and cerebrospinal fluid.
机译:最近的证据表明,蛛网膜下腔和大脑间质之间大量的液体和溶质交换,涉及沿血管的优先途径。我们研究了雄性Wistar大鼠的脑血管,脑脊液室和血管旁空间之间的解剖关系。将荧光示踪剂注入大水罐中,而不影响颅内压。使用3D成像切片机,共聚焦显微镜以及相关的光电子显微镜来分析示踪剂的分布。我们发现示踪剂与蛛网膜下腔和大型水箱中主要动脉和静脉的强3D共定位,这归因于血管周围蛛网膜下腔的体积较大。共聚焦成像证实了这种共定位,并且还揭示了蛛网膜下腔和心室之间新的脑池连接。与蛛网膜下腔中的血管不同,示踪剂包围着穿透动脉而不是静脉。相关的光镜和电子显微镜图像表明,该血管旁空间位于毛细血管内皮层外部,而位于动脉平滑肌细胞外部。总之,由蛛网膜下腔,水箱,心室和小动脉旁间隙组成的脑脊液隔室形成了一个连续且广泛的网络,该网络围绕并穿透了大鼠脑部,其中混合可以促进间质液和脑脊液之间的交换。

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