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犬左心室在体收缩末期压力-容积关系的非线性及负荷敏感性

Nonlinearity and load sensitivity of end-systolic pressure-volume relation of canine left ventricle in vivo.

作者信息

van der Velde E T, Burkhoff D, Steendijk P, Karsdon J, Sagawa K, Baan J

机构信息

Department of Cardiology, Leiden University Hospital, The Netherlands.

出版信息

Circulation. 1991 Jan;83(1):315-27. doi: 10.1161/01.cir.83.1.315.

Abstract

The effects of mechanical changes in loading conditions on the left ventricular end-systolic pressure-volume relation (ESPVR) were studied in nine open-chest dogs, including three dogs studied before and after beta-adrenergic blockade. Left ventricular pressure was measured with a micromanometer, and left ventricular volume was measured with a conductance catheter. ESPVRs were obtained by increasing left atrial inflow over wide volume ranges (as much as threefold) under three different conditions: control or high or low aortic impedance. High impedance was obtained by occlusion of the descending aorta, and low impedance was obtained by a shunt between the subclavian artery and the left atrium. In the unblocked animals in 21 of 28 runs, a second-order polynomial equation gave a better fit for the ESPVR than a linear relation. To quantify the effects of the changes in aortic impedance on the ESPVR, we calculated from the quadratic equation its volume intercept (V18) and its local slope (E18) at an end-systolic pressure (Pes) of 18 kPa. In the unblocked animals, a statistically significant difference was found in V18 between low impedance (21.50 +/- 6.27 ml) and high impedance (14.10 +/- 8.98 ml; p less than 0.005) and between control (19.14 +/- 9.58 ml) and high impedance (p less than 0.05). In most dogs, E18 was increased at high and decreased at low impedance, but not significantly. In the additional experiments with beta-blockade, the nonlinearity diminished somewhat, but the load dependency of the ESPVR remained present after beta-blockade because the same leftward shift of the ESPVR with high aortic impedance was found. Two other relations, namely, of dP/dtmax and of stroke work versus end-diastolic volume, were also investigated, which on the whole showed the same behavior as the ESPVR. These results indicate that the ESPVR and dP/dtmax-Ved and stroke work-end-diastolic volume relations, when studied over a wide volume range, are nonlinear and that changes in loading conditions influence indexes of contractility derived from these relations, especially the volume intercepts, in such a way that an increase in aortic impedance may be interpreted as an increase in contractility. Blocking the beta-adrenergic receptors did not influence the load dependency of the ESPVR but, in some cases, tended to decrease the nonlinearity in concordance with the relation between contractility and nonlinearity in isolated hearts.

摘要

在9只开胸犬中研究了负荷条件的机械变化对左心室收缩末期压力-容积关系(ESPVR)的影响,其中3只犬在β肾上腺素能阻断前后进行了研究。用微压计测量左心室压力,用电导导管测量左心室容积。通过在三种不同条件下(对照、高或低主动脉阻抗)在宽容积范围内(高达三倍)增加左心房流入量来获得ESPVR。通过阻断降主动脉获得高阻抗,通过锁骨下动脉与左心房之间的分流获得低阻抗。在28次实验中的21次未阻断动物实验中,二阶多项式方程比线性关系更能拟合ESPVR。为了量化主动脉阻抗变化对ESPVR的影响,我们从二次方程计算其在收缩末期压力(Pes)为18 kPa时的容积截距(V18)和局部斜率(E18)。在未阻断的动物中,低阻抗(21.50±6.27 ml)和高阻抗(14.10±8.98 ml;p<0.005)之间以及对照(19.14±9.58 ml)和高阻抗之间的V18存在统计学显著差异(p<0.05)。在大多数犬中,E18在高阻抗时增加,在低阻抗时降低,但无显著差异。在β阻断的额外实验中,非线性有所减弱,但β阻断后ESPVR的负荷依赖性仍然存在,因为发现高主动脉阻抗时ESPVR同样向左移位。还研究了另外两个关系,即dP/dtmax以及每搏功与舒张末期容积的关系,总体上它们与ESPVR表现出相同的行为。这些结果表明,当在宽容积范围内研究时,ESPVR以及dP/dtmax-Ved和每搏功-舒张末期容积关系是非线性的,并且负荷条件的变化会影响从这些关系得出的收缩性指标,尤其是容积截距,以至于主动脉阻抗增加可被解释为收缩性增加。阻断β肾上腺素能受体不影响ESPVR的负荷依赖性,但在某些情况下,与离体心脏中收缩性和非线性之间的关系一致,倾向于降低非线性。

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