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一个包含开环动脉阻抗和闭环循环系统的LabVIEW模型。

A LabVIEW model incorporating an open-loop arterial impedance and a closed-loop circulatory system.

作者信息

Cole R T, Lucas C L, Cascio W E, Johnson T A

机构信息

Department of Biomedical Engineering, University of North Carolina at Chapel Hill, 150 MacNider Hall, Chapel Hill, NC 27599, USA.

出版信息

Ann Biomed Eng. 2005 Nov;33(11):1555-73. doi: 10.1007/s10439-005-7785-1.

Abstract

While numerous computer models exist for the circulatory system, many are limited in scope, contain unwanted features or incorporate complex components specific to unique experimental situations. Our purpose was to develop a basic, yet multifaceted, computer model of the left heart and systemic circulation in LabVIEW having universal appeal without sacrificing crucial physiologic features. The program we developed employs Windkessel-type impedance models in several open-loop configurations and a closed-loop model coupling a lumped impedance and ventricular pressure source. The open-loop impedance models demonstrate afterload effects on arbitrary aortic pressure/flow inputs. The closed-loop model catalogs the major circulatory waveforms with changes in afterload, preload, and left heart properties. Our model provides an avenue for expanding the use of the ventricular equations through closed-loop coupling that includes a basic coronary circuit. Tested values used for the afterload components and the effects of afterload parameter changes on various waveforms are consistent with published data. We conclude that this model offers the ability to alter several circulatory factors and digitally catalog the most salient features of the pressure/flow waveforms employing a user-friendly platform. These features make the model a useful instructional tool for students as well as a simple experimental tool for cardiovascular research.

摘要

虽然存在许多用于循环系统的计算机模型,但许多模型在范围上有限,包含不需要的特征或纳入特定于独特实验情况的复杂组件。我们的目的是在LabVIEW中开发一个基本但多方面的左心和体循环计算机模型,该模型具有普遍吸引力且不牺牲关键生理特征。我们开发的程序在几种开环配置中采用风箱型阻抗模型,并采用一个耦合集总阻抗和心室压力源的闭环模型。开环阻抗模型展示了后负荷对任意主动脉压力/流量输入的影响。闭环模型记录了随着后负荷、前负荷和左心特性变化的主要循环波形。我们的模型通过包含基本冠状动脉回路的闭环耦合为扩展心室方程的应用提供了一条途径。用于后负荷组件的测试值以及后负荷参数变化对各种波形的影响与已发表的数据一致。我们得出结论,该模型能够改变几个循环因素,并使用用户友好的平台以数字方式编目压力/流量波形的最显著特征。这些特性使该模型成为学生有用的教学工具以及心血管研究的简单实验工具。

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