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一种适用于心室辅助装置测试和训练的模块化计算循环模型。

A modular computational circulatory model applicable to VAD testing and training.

作者信息

Ferrari Gianfranco, Kozarski Maciej, Zieliński Krzysztof, Fresiello Libera, Di Molfetta Arianna, Górczyńska Krystyna, Pałko Krzysztof J, Darowski Marek

机构信息

Institute of Clinical Physiology, Section of Rome, CNR, Via San Martino della Battaglia 44, 00185 Rome, Italy.

出版信息

J Artif Organs. 2012 Mar;15(1):32-43. doi: 10.1007/s10047-011-0606-4. Epub 2011 Sep 20.

Abstract

Aim of this work was to develop a modular computational model able to interact with ventricular assist devices (VAD) for research and educational applications. The lumped parameter model consists of five functional modules (left and right ventricles, systemic, pulmonary, and coronary circulation) that are easily replaceable if necessary. The possibility of interacting with VADs is achieved via interfaces acting as impedance transformers. This last feature was tested using an electrical VAD model. Tests were aimed at demonstrating the possibilities and verifying the behavior of interfaces when testing VADs connected in different ways to the circulatory system. For these reasons, experiments were performed in a purely numerical mode, simulating a caval occlusion, and with the model interfaced to an external left-VAD (LVAD) in two different ways: with atrioaortic and ventriculoaortic connection. The caval occlusion caused the leftward shift of the LV p-v loop, along with the drop in arterial and ventricular pressures. A narrower LV p-v loop and cardiac output and aortic pressure rise were the main effects of atrioaortic assistance. A wider LV p-v loop and a ventricular average volume drop were the main effects of ventricular-aortic assistance. Results coincided with clinical and experimental data attainable in the literature. The model will be a component of a hydronumerical model designed to be connected to different types of VADs. It will be completed with autonomic features, including the baroreflex and a more detailed coronary circulation model.

摘要

这项工作的目的是开发一种模块化计算模型,该模型能够与心室辅助装置(VAD)交互,用于研究和教育应用。集总参数模型由五个功能模块(左心室、右心室、体循环、肺循环和冠状动脉循环)组成,如有必要,这些模块可轻松更换。与VAD交互的可能性是通过充当阻抗变压器的接口实现的。最后这一特性使用电动VAD模型进行了测试。测试旨在展示各种可能性,并验证以不同方式连接到循环系统的VAD在测试时接口的行为。出于这些原因,实验以纯数值模式进行,模拟腔静脉阻塞,并将模型以两种不同方式连接到外部左心室辅助装置(LVAD):心房主动脉连接和心室主动脉连接。腔静脉阻塞导致左心室压力-容积环向左移位,同时动脉压和心室压下降。心房主动脉辅助的主要效果是左心室压力-容积环变窄、心输出量和主动脉压升高。心室主动脉辅助的主要效果是左心室压力-容积环变宽和心室平均容积下降。结果与文献中可获得的临床和实验数据一致。该模型将成为一个流体数值模型的组成部分,该模型设计用于连接不同类型的VAD。它将具备自主功能,包括压力感受器反射和更详细的冠状动脉循环模型。

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