脑损伤与脑中动脉部分和完全闭塞的机制。

Z S Vexler, T P Roberts, N Derugin, E Kozniewska, A I Arieff, J Kucharczyk
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引用次数: 6

摘要

高速磁共振扩散/灌注成像评估急性缺血猫模型MCA的不同程度狭窄和细胞毒性水肿的形成。从中度灌注或非灌注脑组织分离的突触体中估计钠转运。完全MCA闭塞50-75分钟会造成脑钠运输的严重中断,而离子稳态的持续保存和适应性细胞体积调节系统的激活与中度缺血持续时间的延长有关。神经元离子稳态的保持可能是大脑对脑血流量适度减少的相对耐受性的主要机制之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms of brain injury associated with partial and complete occlusion of the MCA in cat.

High-speed MR diffusion/perfusion imaging was performed to assess variable degree stenosis of the MCA and the formation of cytotoxic edema in a cat model of acute ischemia. Sodium transport was estimated in synaptosomes isolated from moderately perfused or non-perfused brain tissue. Complete MCA occlusion for 50-75 min produced a major disruption of brain sodium transport, whereas continued preservation of ion homeostasis and the activation of adaptive cell volume regulatory systems was associated with longer duration of moderate severity of ischemia. Preservation of neuronal ion homeostasis might be one of the main mechanisms contributing to the relative tolerance of the brain to moderate reductions in cerebral blood flow.

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