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Regulation of Cerebral Blood Flow

机译:调节脑血流量

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摘要

The control of cerebral blood flow is complex, and only beginning to be elucidated. Studies have identified three key regulatory paradigms. The first is cerebral pressure autoregulation, which maintains a constant flow in the face of changing cerebral perfusion pressure. Flow-metabolism coupling refers to the brains ability to vary blood flow to match metabolic activity. An extensive arborization of perivascular nerves also serves to modulate cerebral blood flow, so-called neurogenic regulation. Central to these three paradigms are two cell types: endothelium and astrocytes. The endothelium produces several vasoactive factors that are germane to the regulation of cerebral blood flow: nitric oxide, endothelium-dependent hyperpolarization factor, the eicosanoids, and the endothelins. Astrocytic foot processes directly abut the blood vessels, and play a key role in regulation of cerebral blood flow. Lastly, new research has been investigating cell-cell communication at the microvascular level. Several lines of evidence point to the ability of the larger proximal vessels to coordinate vasomotor responses downstream.
机译:对脑血流的控制是复杂的,只是开始被阐明。研究确定了三个关键的监管范式。第一个是脑压自动调节功能,可以在面对不断变化的脑灌注压时保持恒定的流量。血流代谢耦合是指大脑改变血流以匹配代谢活动的能力。血管周围神经的广泛乔化也可用于调节脑血流量,即所谓的神经源性调节。这三种范例的核心是两种细胞类型:内皮细胞和星形胶质细胞。内皮产生几种与脑血流调节密切相关的血管活性因子:一氧化氮,内皮依赖性超极化因子,类二十烷酸和内皮素。星形胶质细胞足突直接邻接血管,并在调节脑血流中起关键作用。最后,新的研究已经在微血管水平上研究细胞间的通讯。有几条证据表明较大的近端血管具有协调下游血管舒缩反应的能力。

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