微循环
医学
血液粘度
冲程(发动机)
脑血流
心脏病学
血栓
血栓形成
大脑中动脉
内科学
内皮功能障碍
血管舒张
灌注
血栓栓塞性中风
缺血
溶栓
血流
心肌梗塞
心房颤动
工程类
机械工程
作者
Prajwal Gyawali,Thomas Lillicrap,Carlos García Esperón,Aseem Bhattarai,Andrew Bivard,Neil J. Spratt
标识
DOI:10.1055/s-0043-1775858
摘要
Existing effective treatments for ischemic stroke restore blood supply to the ischemic region using thrombolysis or mechanical removal of clot. However, it is increasingly recognized that successful removal of occlusive thrombus from the large artery-recanalization, may not always be accompanied by successful restoration of blood flow to the downstream tissues-reperfusion. Ultimately, brain tissue survival depends on cerebral perfusion, and a functioning microcirculation. Because capillary diameter is often equal to or smaller than an erythrocyte, microcirculation is largely dependent on erythrocyte rheological (hemorheological) factors such as whole blood viscosity (WBV). Several studies in the past have demonstrated elevated WBV in stroke compared with healthy controls. Also, elevated WBV has shown to be an independent risk factor for stroke. Elevated WBV leads to endothelial dysfunction, decreases nitric oxide-dependent flow-mediated vasodilation, and promotes hemostatic alterations/thrombosis, all leading to microcirculation sludging. Compromised microcirculation further leads to decreased cerebral perfusion. Hence, modulating WBV through pharmacological agents might be beneficial to improve cerebral perfusion in stroke. This review discusses the effect of elevated WBV on endothelial function, hemostatic alterations, and thrombosis leading to reduced cerebral perfusion in stroke.
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