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脑循环的流变学

Rheology of the cerebral circulation.

作者信息

Kee D B, Wood J H

出版信息

Neurosurgery. 1984 Jul;15(1):125-31. doi: 10.1227/00006123-198407000-00026.

Abstract

Current concepts of brain perfusion focus on the importance of rheological factors in the determination of cerebral blood flow. Blood viscosity, a primary determinant of blood flow, increases as the shear rate (velocity gradient) decreases, thereby impeding cerebral perfusion. Hematocrit, erythrocyte aggregation, erythrocyte flexibility, platelet aggregation, and plasma viscosity differentially influence blood flow through the conductance vessels and microcirculation of the brain. In addition, the microcirculation is also affected by the Fahraeus effect, the inversion phenomenon, and the screening effect. Knowledge of these factors affecting blood flow provides a rationale for experimental and clinical rheological therapies in the treatment or prevention of acute focal cerebral ischemia.

摘要

当前关于脑灌注的概念聚焦于流变学因素在确定脑血流量方面的重要性。血液粘度是血流量的主要决定因素,它随着剪切速率(速度梯度)的降低而增加,从而阻碍脑灌注。血细胞比容、红细胞聚集、红细胞柔韧性、血小板聚集和血浆粘度对通过脑导血管和微循环的血流有不同影响。此外,微循环还受法-林效应、倒置现象和筛选效应的影响。了解这些影响血流的因素为治疗或预防急性局灶性脑缺血的实验性和临床流变学疗法提供了理论依据。

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