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首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >Partial aortic occlusion and cerebral venous steal: venous effects of arterial manipulation in acute stroke.
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Partial aortic occlusion and cerebral venous steal: venous effects of arterial manipulation in acute stroke.

机译:主动脉部分阻塞和脑静脉盗窃:急性卒中中动脉操纵的静脉作用。

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摘要

Acute ischemic stroke therapy emphasizes early arterial clot lysis or removal. Partial aortic occlusion has recently emerged as an alternative hemodynamic approach to augment cerebral perfusion in acute ischemic stroke. The exact mechanism of cerebral flow augmentation with partial aortic occlusion remains unclear and may involve more than simple diversion of arterial blood flow from the lower body to cerebral collateral circulation. The cerebral venous steal hypothesis suggests that even a small increase in tissue pressure in the ischemic area will divert blood flow to surrounding regions with lesser tissue pressures. This may cause no-reflow (absence of flow after restoration of arterial patency) in the ischemic core and "luxury perfusion" in the surrounding regions. Such maldistribution may be reversed with increased venous pressure titrated to avoid changes in intracranial pressure. We propose that partial aortic occlusion enhances perfusion in the brain by offsetting cerebral venous steal. Partial aortic occlusion redistributes blood volume into the upper part of the body, manifested by an increase in central venous pressure. Increased venous pressure recruits the collapsed vascular network and, by eliminating cerebral venous steal, corrects perifocal perfusion maldistribution analogous to positive end-expiratory pressure recruitment of collapsed airways to decrease ventilation/perfusion mismatch in the lungs.
机译:急性缺血性中风疗法强调早期动脉凝块的溶解或清除。近来出现了部分主动脉阻塞,作为在急性缺血性卒中中增加脑灌注的另一种血液动力学方法。尚有部分主动脉闭塞的脑流量增加的确切机制尚不清楚,可能不仅仅涉及将动脉血流从下半身转移到脑侧支循环。脑静脉盗窃假说表明,即使局部缺血区域的组织压力略有增加,也会将血液流转移到组织压力较小的周围区域。这可能会导致缺血核心的无复流(恢复动脉通畅后无血流)和周围区域的“豪华灌注”。静脉滴定增高可以避免这种分布不均,避免颅内压发生变化。我们提出,部分主动脉阻塞可通过抵消脑静脉盗窃来增强脑灌注。主动脉部分阻塞将血液量重新分配到身体的上部,这表现为中心静脉压的增加。升高的静脉压力会吸收塌陷的血管网络,并通过消除脑静脉偷窃来纠正与萎缩的气道呼气末正压募集相似的局部聚焦灌注不均,以减少肺中的通气/灌注不匹配。

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