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Subarachnoid Hemorrhage, Spreading Depolarizations and Impaired Neurovascular Coupling

机译:蛛网膜下腔出血,去极化扩散和神经血管耦合受损

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Aneurysmal subarachnoid hemorrhage (SAH) has devastating consequences on brain function including profound effects on communication between neurons and the vasculature leading to cerebral ischemia. Physiologically, neurovascular coupling represents a focal increase in cerebral blood flow to meet increased metabolic demand of neurons within active regions of the brain. Neurovascular coupling is an ongoing process involving coordinated activity of the neurovascular unit—neurons, astrocytes, and parenchymal arterioles. Neuronal activity can also influence cerebral blood flow on a larger scale. Spreading depolarizations (SD) are self-propagating waves of neuronal depolarization and are observed during migraine, traumatic brain injury, and stroke. Typically, SD is associated with increased cerebral blood flow. Emerging evidence indicates that SAH causes inversion of neurovascular communication on both the local and global level. In contrast to other events causing SD, SAH-induced SD decreases rather than increases cerebral blood flow. Further, at the level of the neurovascular unit, SAH causes an inversion of neurovascular coupling from vasodilation to vasoconstriction. Global ischemia can also adversely affect the neurovascular response. Here, we summarize current knowledge regarding the impact of SAH and global ischemia on neurovascular communication. A mechanistic understanding of these events should provide novel strategies to treat these neurovascular disorders.
机译:动脉瘤性蛛网膜下腔出血(SAH)对脑功能具有毁灭性后果,包括对神经元和脉管系统之间的通讯产生深远影响,导致脑缺血。从生理上讲,神经血管耦合代表脑血流的局部增加,以满足大脑活动区域内神经元代谢需求的增加。神经血管偶联是一个持续的过程,涉及神经血管单元(神经元,星形胶质细胞和实质小动脉)的协调活动。神经元活动也可以在更大范围内影响脑血流量。扩展去极化(SD)是神经元去极化的自蔓延波,在偏头痛,脑外伤和中风期间观察到。通常,SD与脑血流量增加有关。越来越多的证据表明,SAH会在局部和整体水平上引起神经血管通讯的反转。与引起SD的其他事件相反,SAH诱导的SD下降而不是增加脑血流量。此外,在神经血管单位的水平上,SAH引起神经血管偶联从血管舒张转变为血管收缩。整体缺血也会对神经血管反应产生不利影响。在这里,我们总结了有关SAH和整体缺血对神经血管通讯的影响的当前知识。对这些事件的机械理解应该为治疗这些神经血管疾病提供新颖的策略。

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