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血管运动对血管阻力的贡献:未孕大鼠与孕鼠动脉的比较。

Contribution of vasomotion to vascular resistance: a comparison of arteries from virgin and pregnant rats.

作者信息

Gratton R J, Gandley R E, McCarthy J F, Michaluk W K, Slinker B K, McLaughlin M K

机构信息

Department of Obstetrics, Gynecology and Reproductive Sciences, University of Pittsburgh, Pittsburgh PA 15213, USA.

出版信息

J Appl Physiol (1985). 1998 Dec;85(6):2255-60. doi: 10.1152/jappl.1998.85.6.2255.

Abstract

Intrinsic oscillatory activity, or vasomotion, within the microcirculation has many potential functions, including modulation of vascular resistance. Alterations in oscillatory activity during pregnancy may contribute to the marked reduction in vascular resistance. The purpose of this study was 1) to mathematically model the oscillatory changes in vessel diameter and determine the effect on vascular resistance and 2) to characterize the vasomotion in resistance arteries of pregnant and nonpregnant (virgin) rats. Mesenteric arteries were isolated from Sprague-Dawley rats and studied in a pressurized arteriograph. Mathematical modeling demonstrated that the resistance in a vessel with vasomotion was greater than that in a static vessel with the same mean radius. During constriction with the alpha1-adrenergic agonist phenylephrine, the amplitude of oscillation was less in the arteries from pregnant rats. We conclude that vasomotor activity may provide a mechanism to regulate vascular resistance and blood flow independent of static changes in arterial diameter. During pregnancy the decrease in vasomotor activity in resistance arteries may contribute to the reduction in peripheral vascular resistance.

摘要

微循环内的内在振荡活动,即血管运动,具有许多潜在功能,包括调节血管阻力。孕期振荡活动的改变可能导致血管阻力显著降低。本研究的目的是:1)通过数学模型模拟血管直径的振荡变化并确定其对血管阻力的影响;2)表征妊娠大鼠和未孕(处女)大鼠阻力动脉中的血管运动。从斯普拉格-道利大鼠分离出肠系膜动脉,并在压力动脉造影仪中进行研究。数学模型表明,有血管运动的血管中的阻力大于具有相同平均半径的静态血管中的阻力。在用α1肾上腺素能激动剂去氧肾上腺素收缩期间,妊娠大鼠动脉中的振荡幅度较小。我们得出结论,血管运动活性可能提供一种独立于动脉直径静态变化来调节血管阻力和血流的机制。在孕期,阻力动脉中血管运动活性的降低可能导致外周血管阻力降低。

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