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冠状动脉容量对舒张压-血流关系解读的影响。

The effects of the coronary capacitance on the interpretation of diastolic pressure-flow relationships.

作者信息

Eng C, Jentzer J H, Kirk E S

出版信息

Circ Res. 1982 Mar;50(3):334-41. doi: 10.1161/01.res.50.3.334.

Abstract

The effects of coronary capacitance on instantaneous pressure-flow (P/F) relationships were analyzed using a theoretical model of coronary flow during diastole that included capacitance. The magnitude of the discrepancy between actual intramural and instantaneously derived P/F relationships was predicted to be dependent on the ratio of two natural decay constants (central aortic decay constant/intrinsic coronary decay constant). The effects of coronary capacitance are eliminated using constant pressure conditions. The instantaneous (dynamic) and constant pressure (static) P/F relationships were compared experimentally using a reservoir to provide constant pressure perfusion during prolonged diastoles in heart blocked dogs. In the presence of coronary tone, zero flow pressure intercepts (Pzf) of 27.1 +/- 6.6 and 11.0 +/- 3.0 mm Hg were obtained under dynamic and constant pressure conditions respectively, P less than 0.001. After maximal vasodilation, Pzf of 14.2 +/- 4.5 mmHg and 10.7 +/- 2.4 mmHg were obtained under dynamic and constant pressure conditions, respectively, P = NS. Pzf derived under constant pressure conditions were independent of the state of coronary vasomotor tone with a value about 11 mmHg. The slopes of the dynamic P/F relationships tended to be greater than those derived from constant pressure conditions. This may suggest an additional component of increasing coronary resistance during diastole that could not be readily assessed under dynamic conditions. We conclude that coronary capacitive effects and resistance changes during diastole severely limit the interpretation of instantaneous dynamic P/F relationships. Diastolic coronary perfusion ceases at about 11 mm Hg and is independent of coronary tone when capacitive effects are eliminated.

摘要

利用一个包含电容的舒张期冠脉血流理论模型,分析了冠脉电容对瞬时压力-流量(P/F)关系的影响。预计实际壁内压力与瞬时得出的P/F关系之间的差异大小取决于两个自然衰减常数的比值(中心主动脉衰减常数/固有冠脉衰减常数)。在恒压条件下,冠脉电容的影响被消除。使用一个储液器在心脏传导阻滞犬的长时间舒张期提供恒压灌注,通过实验比较了瞬时(动态)和恒压(静态)P/F关系。在存在冠脉张力的情况下,动态和恒压条件下分别获得零流量压力截距(Pzf)为27.1±6.6和11.0±3.0 mmHg,P<0.001。最大血管舒张后,动态和恒压条件下分别获得Pzf为14.2±4.5 mmHg和10.7±2.4 mmHg,P=无显著性差异。恒压条件下得出的Pzf与冠脉血管舒缩张力状态无关,值约为11 mmHg。动态P/F关系的斜率往往大于恒压条件下得出的斜率。这可能表明在舒张期存在一个增加冠脉阻力的额外因素,在动态条件下不易评估。我们得出结论,舒张期冠脉电容效应和阻力变化严重限制了对瞬时动态P/F关系的解释。当消除电容效应时,舒张期冠脉灌注在约11 mmHg时停止,且与冠脉张力无关。

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