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基于微导管的选择性动脉内低温对短暂性脑缺血后血流动力学变化的影响。

The effect of a microcatheter-based selective intra-arterial hypothermia on hemodynamic changes following transient cerebral ischemia.

作者信息

Chen Jian, Fredrickson Vance, Ding Yuchuan, Jiang Lingling, Luo Yuming, Ji Xunming

出版信息

Neurol Res. 2015 Mar;37(3):263-8. doi: 10.1179/1743132814Y.0000000451. Epub 2014 Oct 13.

Abstract

OBJECTIVES

We investigated the effect of a microcatheter-based selectively induced intra-arterial hypothermia on hemodynamic changes following transient cerebral ischemia in rats.

METHODS

Stroke was induced in male Sprague-Dawley rats by a two-hour middle cerebral artery occlusion (MCAO) using a microcatheter. After the two-hour MCAO, 0·9% cold saline (0°C) was selectively infused through a microcatheter. Cerebral blood flow (CBF) in the ischemic brain region was continuously monitored by Laser-Doppler flowmetry (LDF) during the procedure. Following ischemia/reperfusion, serial functional neurologic testing was performed, and cerebral infarct volume was evaluated after 48 hours.

RESULTS

The local cold saline infusion, via a microcatheter, achieved a rapid induction of brain hypothermia (cerebral cortex from 37·1 ± 0·3 to 30·7 ± 0·4°C; striatum from 37·5 ± 0·3 to 30·9 ± 0·5°C). When compared to the non-treatment group, the local cold saline infusion treatment reduced both post-ischemic hyperperfusion (about 40%, P < 0·01) and delayed post-ischemic hypoperfusion (P < 0·01), improved functional neurological testing (P < 0·01), and reduced both cerebral infarction volume (40·6 ± 5·3 vs. 61·7 ± 8·6%, P < 0·01) and cerebral edema (7·8 ± 2·6 vs.15·4 ± 3·2%, P < 0·01).

CONCLUSION

Cold saline, when infused directly into the ischemic brain region, can confer robust neuroprotection by reducing immediate post-ischemic hyperperfusion and delayed post-ischemic hypoperfusion.

摘要

目的

我们研究了基于微导管的选择性诱导动脉内低温对大鼠短暂性脑缺血后血流动力学变化的影响。

方法

使用微导管对雄性Sprague-Dawley大鼠进行两小时的大脑中动脉闭塞(MCAO)以诱导中风。两小时的MCAO后,通过微导管选择性注入0.9%的冷盐水(0°C)。在该过程中,通过激光多普勒血流仪(LDF)持续监测缺血脑区的脑血流量(CBF)。缺血/再灌注后,进行系列功能神经学测试,并在48小时后评估脑梗死体积。

结果

通过微导管局部注入冷盐水可迅速诱导脑部低温(大脑皮层从37.1±0.3°C降至30.7±0.4°C;纹状体从37.5±0.3°C降至30.9±0.5°C)。与未治疗组相比,局部冷盐水注入治疗可减少缺血后过度灌注(约40%,P<0.01)和延迟性缺血后灌注不足(P<0.01),改善功能神经学测试(P<0.01),并减少脑梗死体积(40.6±5.3%对61.7±8.6%,P<0.01)和脑水肿(7.8±2.6%对15.4±3.2%,P<0.01)。

结论

直接注入缺血脑区的冷盐水可通过减少缺血后即刻过度灌注和延迟性缺血后灌注不足来提供强大的神经保护作用。

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