Wyatt D, Lee J, Downey J M
Circ Res. 1982 May;50(5):663-70. doi: 10.1161/01.res.50.5.663.
We have examined the feasibility of determining coronary collateral blood flow in an open-chest dog by a "load line" type of analysis as is often employed to analyze transistors and vacuum tubes. The load line equation states that collateral flow is given by the quantity: [Formula: see text] where PcP is peripheral coronary pressure, AOP is aortic pressure, Qret is retrograde flow, and K is a constant. The validity of this equation was critically tested in a series of dog experiments in which the collateral vessels were found to approximate a linear resistance, the source pressure for the collaterals (K in the equation) was found to be 0.8 of aortic pressure, and the retrograde flow with zero back pressure was found to account for all of the collateral flow. Finally, we found that estimates from the equation correlated well with direct microsphere measurements of collateral flow. All of these findings support the use of the proposed technique which determines collateral flow by three easily measured laboratory parameters.
我们已经通过一种常用于分析晶体管和真空管的“负载线”类型分析,研究了在开胸犬中测定冠状动脉侧支血流的可行性。负载线方程表明,侧支血流由以下量给出:[公式:见原文],其中PcP是外周冠状动脉压力,AOP是主动脉压力,Qret是逆行血流,K是一个常数。在一系列犬实验中对该方程的有效性进行了严格测试。在这些实验中,发现侧支血管近似线性阻力,侧支的源压力(方程中的K)为主动脉压力的0.8,并且发现零背压下的逆行血流占所有侧支血流。最后,我们发现该方程的估计值与侧支血流的直接微球测量结果相关性良好。所有这些发现都支持使用所提出的技术,该技术通过三个易于测量的实验室参数来确定侧支血流。