Negroni J A, Lascano E C, Pichel R H
Departamento de Investigación, Facultad de Ingeniería, Universidad de Buenos Aires, Argentina.
Ann Biomed Eng. 1988;16(3):279-97. doi: 10.1007/BF02368004.
A theoretical relationship between mean ventricular pressure (P) and mean ventricular outflow (Q) was developed based on a model of the left ventricle with elastic-resistive properties. Using a polynomial interpolation method, a fifth-order polynomial equation for the P-Q relationship was obtained. Its coefficients are functions of end-diastolic volume (VD), heart rate (HR), contractile state (CS), diastolic elastance (ED), asymmetry (S) of the elastance function E(t), and ventricular internal resistance factor (K). Effect of changes of these parameters indicated that normal and enhanced CS relations diverge toward the P axis but have a common intercept toward the Q axis. A similar effect was obtained with increased asymmetry of E(t). Changes in VD, HR and ED produced a parallel shift of the P-Q relation. The effect of K was negligible, however, which would reduce the description of the P-Q relationship to a third-order polynomial equation. A flow-dependent deactivation component was introduced, altering the asymmetry factor S, which decreases in a linear proportion to Q. This factor shifted the pump function graph downwards. We conclude that the theoretical description of the P-Q relation we present reproduces the experimental behavior of pump function diagrams reported in the literature (changes in VD, HR, and CS) and predicts the possible behavior due to other parameter changes.
基于具有弹性阻力特性的左心室模型,建立了平均心室压力(P)与平均心室流出量(Q)之间的理论关系。采用多项式插值法,得到了P-Q关系的五阶多项式方程。其系数是舒张末期容积(VD)、心率(HR)、收缩状态(CS)、舒张弹性(ED)、弹性函数E(t)的不对称性(S)以及心室内阻力因子(K)的函数。这些参数变化的影响表明,正常和增强的CS关系向P轴发散,但在Q轴上有一个共同的截距。E(t)不对称性增加时也得到了类似的效果。VD、HR和ED的变化使P-Q关系产生平行移动。然而,K的影响可以忽略不计,这将把P-Q关系的描述简化为一个三阶多项式方程。引入了一个流量依赖性失活成分,改变了不对称因子S,S与Q成线性比例减小。这个因子使泵功能图向下移动。我们得出结论,我们所提出的P-Q关系的理论描述再现了文献中报道的泵功能图的实验行为(VD、HR和CS的变化),并预测了由于其他参数变化可能出现的行为。