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评估风箱模型作为主动脉输入阻抗的模型。

Assessment of Windkessel as a model of aortic input impedance.

作者信息

Burkhoff D, Alexander J, Schipke J

机构信息

Department of Biomedical Engineering, Johns Hopkins Medical School, Baltimore, Maryland 21205.

出版信息

Am J Physiol. 1988 Oct;255(4 Pt 2):H742-53. doi: 10.1152/ajpheart.1988.255.4.H742.

Abstract

To facilitate the analysis of aortic-ventricular coupling, simplified models of aortic input properties have been developed, such as the three-element Windkessel. Even though the impedance spectrum of the Windkessel reproduces the gross features of the real aortic input impedance, it fails to reproduce many of its details. In the present study we assessed the physiological significance of the differences between real and Windkessel impedance. We measured aortic input impedance spectra from five anesthetized open-chest dogs under a wide range of conditions. For each experimentally determined spectrum we estimated the corresponding values of the best-fit Windkessel parameters. By computer simulation we imposed both the real and best-fit Windkessel impedances on a model left ventricle and assessed the differences in seven different coupling variables. The analysis indicated that the Windkessel model provides a reasonable representation of afterload for purposes of predicting stroke volume, stroke work, oxygen consumption, and systolic and diastolic aortic pressures. However, the Windkessel model significantly underestimates peak aortic flow, slightly underestimates mean arterial pressure, and, of course, does not provide realistic aortic pressure and flow waveforms.

摘要

为便于分析主动脉-心室耦合,已开发出主动脉输入特性的简化模型,如三元件风箱模型。尽管风箱模型的阻抗谱再现了真实主动脉输入阻抗的总体特征,但它无法再现其许多细节。在本研究中,我们评估了真实阻抗与风箱阻抗之间差异的生理意义。我们在多种条件下测量了五只麻醉开胸犬的主动脉输入阻抗谱。对于每个实验确定的谱,我们估计了最佳拟合风箱参数的相应值。通过计算机模拟,我们将真实阻抗和最佳拟合风箱阻抗都施加到一个左心室模型上,并评估了七个不同耦合变量的差异。分析表明,风箱模型在预测 stroke volume、stroke work、氧耗以及收缩期和舒张期主动脉压方面,为后负荷提供了合理的表示。然而,风箱模型显著低估了主动脉峰值流量,略微低估了平均动脉压,当然,也无法提供真实的主动脉压力和流量波形。 (注:原文中“stroke volume”和“stroke work”未给出准确中文术语,可根据具体医学背景准确翻译,这里保留英文)

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