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沙土鼠脑选择性易损区域缺血后毛细血管灌注的形态学评估

Morphometric evaluation of post-ischemic capillary perfusion in selectively vulnerable areas of gerbil brain.

作者信息

Imdahl A, Hossmann K A

出版信息

Acta Neuropathol. 1986;69(3-4):267-71. doi: 10.1007/BF00688303.

Abstract

In gerbils the hemispheric blood flow was interrupted for 5 min by bilateral carotid artery occlusion to produce delayed selective destruction of the CA 1 sector of hippocampus. The influence of hemodynamic factors was studied by evaluating the microcirculation before and at two times after ischemia (3 min and 7 days), using Evans blue as an intravital vascular tracer. The density of perfused capillaries and the fractional volume of circulating blood were determined by quantitative morphometry and the values for the vulnerable CA 1 sector compared with those for the resistant CA 3 sector and cerebral cortex. In control animals the number of perfused capillaries in the CA 1 sector was about 20% lower, and the volume of circulating blood about 30% lower, than in the CA 3 sector or cerebral cortex. This difference was markedly enhanced after 5-min ischemia. During the early recirculation phase, capillary perfusion improved in the cortex, whereas in the CA 1 sector (and to a lesser degree also in the CA 3 sector) it declined. After 7 days, the density of perfused capillaries and the volume of circulating blood had returned to control levels in the cerebral cortex and CA 3 sector of hippocampus. In the CA 1 sector, in contrast, the microcirculation had further deteriorated. The density of perfused capillaries was less than 30%, and the circulating blood volume even less than 50%, of that in the cerebral cortex.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在沙鼠中,通过双侧颈总动脉闭塞使半球血流量中断5分钟,以造成海马CA1区的延迟性选择性破坏。使用伊文思蓝作为活体血管示踪剂,通过评估缺血前以及缺血后两个时间点(3分钟和7天)的微循环,研究血流动力学因素的影响。通过定量形态学测定灌注毛细血管的密度和循环血液的分数体积,并将易损的CA1区的值与抗损伤的CA3区和大脑皮层的值进行比较。在对照动物中,CA1区灌注毛细血管的数量比CA3区或大脑皮层低约20%,循环血液量低约30%。5分钟缺血后,这种差异明显增大。在早期再灌注阶段,皮层的毛细血管灌注改善,而CA1区(CA3区程度较轻)的毛细血管灌注下降。7天后,大脑皮层和海马CA3区的灌注毛细血管密度和循环血液量恢复到对照水平。相比之下,CA1区的微循环进一步恶化。灌注毛细血管的密度不到大脑皮层的30%,循环血量甚至不到大脑皮层的50%。(摘要截短于250字)

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