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一种用于测试儿科辅助设备的儿科循环系统计算机模型。

A computer model of the pediatric circulatory system for testing pediatric assist devices.

作者信息

Giridharan Guruprasad A, Koenig Steven C, Mitchell Michael, Gartner Mark, Pantalos George M

机构信息

Cardiovascular Innovation Institute, University of Louisville, Departments of Surgery and Bioengineering, Louisville, Kentucky 40202, USA.

出版信息

ASAIO J. 2007 Jan-Feb;53(1):74-81. doi: 10.1097/01.mat.0000247154.02260.30.

Abstract

Lumped parameter computer models of the pediatric circulatory systems for 1- and 4-year-olds were developed to predict hemodynamic responses to mechanical circulatory support devices. Model parameters, including resistance, compliance and volume, were adjusted to match hemodynamic pressure and flow waveforms, pressure-volume loops, percent systole, and heart rate of pediatric patients (n = 6) with normal ventricles. Left ventricular failure was modeled by adjusting the time-varying compliance curve of the left heart to produce aortic pressures and cardiac outputs consistent with those observed clinically. Models of pediatric continuous flow (CF) and pulsatile flow (PF) ventricular assist devices (VAD) and intraaortic balloon pump (IABP) were developed and integrated into the heart failure pediatric circulatory system models. Computer simulations were conducted to predict acute hemodynamic responses to PF and CF VAD operating at 50%, 75% and 100% support and 2.5 and 5 ml IABP operating at 1:1 and 1:2 support modes. The computer model of the pediatric circulation matched the human pediatric hemodynamic waveform morphology to within 90% and cardiac function parameters with 95% accuracy. The computer model predicted PF VAD and IABP restore aortic pressure pulsatility and variation in end-systolic and end-diastolic volume, but diminish with increasing CF VAD support.

摘要

开发了1岁和4岁儿童循环系统的集总参数计算机模型,以预测对机械循环支持装置的血流动力学反应。调整模型参数,包括阻力、顺应性和容积,以匹配正常心室的儿科患者(n = 6)的血流动力学压力和流量波形、压力-容积环、收缩期百分比和心率。通过调整左心随时间变化的顺应性曲线来模拟左心室衰竭,以产生与临床观察一致的主动脉压力和心输出量。开发了儿科连续流(CF)和搏动流(PF)心室辅助装置(VAD)以及主动脉内球囊泵(IABP)的模型,并将其整合到心力衰竭儿科循环系统模型中。进行计算机模拟,以预测PF和CF VAD在50%、75%和100%支持下以及2.5和5 ml IABP在1:1和1:2支持模式下运行时的急性血流动力学反应。儿科循环计算机模型与人类儿科血流动力学波形形态的匹配度在90%以内,与心功能参数的匹配度为95%。计算机模型预测PF VAD和IABP可恢复主动脉压力搏动性以及收缩末期和舒张末期容积的变化,但随着CF VAD支持的增加而减小。

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