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Changes in cerebral circulation and neuronal metabolism during chronic cerebral vasospasm after sub-arachnoid hemorrhage

机译:亚蛛网膜出血后慢性脑血管痉挛期间脑循环和神经元代谢的变化

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Development of chronic cerebral vasospasm (VS) after sub-arachnoid hemorrhage (SAH) must be one of the most critical factors influencing morbidity and mortality in patients with ruptured cerebral aneurysm, We studied how neuronal cells are affected by alteration of cerebral circulation and metabolism during VS in a primate model. The SAH was induced in the right basal cisterns in monkeys. Angiography presented VS maximally 7 days after SAH. In the area of VS, cerebral blood flow (CBF) showed a significant reduction accompanied by an impairment of CBF autoregulation from the acute to maximum stage of VS. In this region, cerebral energy metabolism was critically depleted and microcirculation was impaired in a state of impaired CBF autoregulation. The observation by proton magnetic resonance spectroscopy (MRS) in an experimental model demonstrated a small but significant loss of neuronal cells during development of VS. The MRS study in SAH patients also demonstrated the injury in a subpopulation of neurons during development of VS or after SAH. The results indicated that the brain areas of VS are so seriously affected to exist near ischemic threshold, in states of impaired autoregulation. These critical states possibly influence the neuronal cells to survive during development of VS after SAH. ?2003 Elsevier Science B.V. All rights reserved.
机译:慢性脑血管痉挛(VS)在亚蛛网膜出血(SAH)后必须是影响脑动脉瘤破裂患者发病率和死亡率的最关键因素之一,我们研究了神经元细胞如何受到脑循环和新陈代谢的改变的影响vs在灵长类动物模型中。 Sah在猴子的右基石粪便中诱发。血管造影在SAH后7天最大限度地呈现VS。在VS的面积中,脑血流(CBF)显示出显着的减少,伴随着CBF自动调节从急性急性损伤到VS的最大阶段。在该区域中,脑能量代谢严重耗尽,并且在损伤的CBF仿生损伤状态下损害微循环。在实验模型中的质子磁共振光谱(MRS)的观察表明,在VS的开发期间,在VS的开发过程中表现出小而显着的神经元细胞损失。 SAH患者的夫人的研究还证明了在VS或SAH之后的神经元亚群中患有损伤。结果表明,在自动化障碍障碍状态下,VS的大脑区域受到缺血阈值附近存在的严重影响。这些关键状态可能会影响神经元细胞在SAH之后的VS开发期间存活。 ?2003年elestvier science b.v.保留所有权利。

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