Canty J M, Klocke F J, Mates R E
Circ Res. 1987 Feb;60(2):273-82. doi: 10.1161/01.res.60.2.273.
Although previous studies have proposed a variety of models to characterize diastolic pressure-flow relations, the models' ability to predict capacitance-free pressure-flow relations from dynamic information in individual studies has not been determined. This study tested the ability of a lumped RC model with pressure-dependent parameters to predict diastolic capacitance-free flow during maximum vasodilation in anesthetized dogs. Model parameters were characterized by perturbing the circumflex coronary artery with a ramp pressure waveform that caused coronary artery pressure to decline at rates varying from 30-150 mm Hg/sec. Capacitance-free relations constructed from declining and rising ramp pressure-flow data corresponded with capacitance-free pressure-flow points constructed during constant-pressure coronary artery perfusion (which are model-independent). The model parameters derived from analysis of the ramp data indicate that conductance of the coronary bed varies directly with coronary pressure and is independent of the rate of coronary pressure decay. Values of coronary capacitance vary inversely with coronary artery pressure and with the magnitude of dPLC/dt. Thus, a simple, lumped diastolic model with pressure-dependent parameters can predict capacitance-free pressure-flow behavior from dynamic pressure-flow data and characterize model parameters over a wide range of coronary pressure.
尽管先前的研究提出了多种模型来描述舒张压-血流关系,但在个体研究中,这些模型根据动态信息预测无电容压力-血流关系的能力尚未得到确定。本研究测试了一个具有压力依赖性参数的集总RC模型在麻醉犬最大血管舒张期间预测舒张期无电容血流的能力。通过用斜坡压力波形扰动左旋冠状动脉来表征模型参数,该波形使冠状动脉压力以30 - 150 mmHg/秒的不同速率下降。从下降和上升的斜坡压力-血流数据构建的无电容关系与在恒压冠状动脉灌注期间构建的无电容压力-血流点相对应(这些点与模型无关)。从斜坡数据分析得出的模型参数表明,冠状动脉床的电导与冠状动脉压力直接相关,且与冠状动脉压力衰减速率无关。冠状动脉电容值与冠状动脉压力以及dPLC/dt的大小成反比。因此,一个具有压力依赖性参数的简单集总舒张期模型可以根据动态压力-血流数据预测无电容压力-血流行为,并在广泛的冠状动脉压力范围内表征模型参数。