硝普钠(SNP)低血压:大鼠颅内压(ICP)和心肌小动脉血流动力学。

G P Lu, D K Kaul, S M Feldman, L R Orkin, S Baez
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摘要

本文详细介绍了一种急性封闭颅窗法。该方法可用于活体显微镜下大鼠脑脊液微循环的研究。利用这些方法和技术,在正常生理条件下,同时测量并表征了SNP(静脉注射)全体性降压对心肌微血管血流动力学和ICP的影响。人工脑脊液(CSF)的pH、PO2、PCO2和温度在封闭的颅窗中间歇性测量,在制备稳定期后30 ~ 60 min保持相对恒定。注射SNP(6.2-35.0微克/千克/分钟,0.02% sol,静脉注射)显著降低血压(52.1 +/- 13.4 mm Hg,平均+/- SD)。从微血管内径(idd)和微血流动力学的测量来看,在低血压期间,动脉内径(从35.4 +/- 10.1微米,到47.1 +/- 5.7微米,平均和标准差,33.0%)和估计的大流量(51.2%)显著增加。血流动力学参数的改变主要发生在小动脉系统。在SNP低血压期间,静脉直径只有很小的变化。戊巴比妥麻醉大鼠SNP低血压期间ICP中度升高(22.0%)与脑微循环系统的微血流动力学变化密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sodium nitroprusside (SNP) hypotension: intracranial pressure (ICP) and hemodynamics in pial arteriole in the rat.

A detailed description is made of an acute closed cranial window method. The method is used for the study of cerebral pial microcirculation by intravital microscopy in the rat. Using these methods and techniques, the effects of systemic hypotension by SNP, i.v., on pial microvessel hemodynamics and on ICP were simultaneously measured and characterized under normophysiological conditions. The pH, PO2, PCO2 and temperature of the artificial cerebrospinal fluid (CSF) in the closed cranial window, intermittently measured, remained relatively constant, 30 to 60 min following the period of stabilization of the preparation. The infusion of SNP (6.2-35.0 micrograms/kg/min, 0.02% sol., i.v.) significantly decreased BP (52.1 +/- 13.4 mm Hg, mean +/- SD). From measurement of microvessels internal diameter (I. D.) and microhemodynamics, significant increases in pial arteriolar I.D. (from 35.4 +/- 10.1, microns, to 47.1 +/- 5.7, microns, mean and S.D., 33.0%) and estimated bulk flow (51.2%), occurred during the hypotension. The changes in hemodynamic parameter were predominantly in the arteriolar system. Only minimal changes in the venular diameter occurred during the SNP hypotension. The observed moderate (22.0%) increase in ICP during SNP hypotension in pentobarbital anesthetized rat correlates well with the microhemodynamic changes of the cerebral microcirculatory system.

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