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用于评估机械循环支持控制策略的数学模型。

A mathematical model to evaluate control strategies for mechanical circulatory support.

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.

出版信息

Artif Organs. 2009 Aug;33(8):593-603. doi: 10.1111/j.1525-1594.2009.00755.x. Epub 2009 Jun 24.

Abstract

Continuous flow ventricular assist devices (VADs) for mechanical circulatory support (MCS) are generally smaller and believed to be more reliable than pulsatile VADs. However, regarding continuous flow, there are concerns about the decreased pulsatility and ventricular unloading. Moreover, pulsatile VADs offer a wider range in control strategies. For this reason, we used a computer model to evaluate whether pulsatile operation of a continuous flow VAD would be more beneficial than the standard constant pump speed. The computer model describes the left and right ventricle with one-fiber heart contraction models, and the systemic, pulmonary, and coronary circulation with lumped parameter hemodynamical models, while the heart rate is regulated with a baroreflex model. With this computer model, both normal and heart failure hemodynamics were simulated. A HeartMate II left ventricular assist device model was connected to this model, and both constant speed and pulsatile support were simulated. Pulsatile support did not solve the decreased pulsatility issue, but it did improve perfusion (cardiac index and coronary flow) and unloading (stroke work and heart rate) compared with constant speed. Also, pulsatile support would be beneficial for developing control strategies, as it offers more options to adjust assist device settings to the patient's needs. Because the mathematical model used in this study can simulate different assist device settings, it can play a valuable role in developing mechanical circulatory support control strategies.

摘要

持续流动心室辅助装置(VAD)用于机械循环支持(MCS)通常较小,被认为比脉动 VAD 更可靠。然而,关于持续流动,人们担心脉动性降低和心室卸载。此外,脉动 VAD 提供了更广泛的控制策略。出于这个原因,我们使用计算机模型来评估脉动操作的连续流 VAD 是否比标准恒速泵更有益。该计算机模型使用单纤维心脏收缩模型来描述左心室和右心室,使用集总参数血流动力学模型来描述体循环、肺循环和冠状动脉循环,而心率则由血压反射模型调节。使用这种计算机模型,可以模拟正常和心力衰竭的血液动力学。将一个 HeartMate II 左心室辅助装置模型连接到该模型上,并模拟恒速和脉动支持。脉动支持并没有解决脉动性降低的问题,但与恒速相比,它确实改善了灌注(心指数和冠状动脉流量)和卸载(每搏功和心率)。此外,脉动支持对于开发控制策略是有益的,因为它为调整辅助装置设置以满足患者需求提供了更多选择。由于本研究中使用的数学模型可以模拟不同的辅助装置设置,因此它可以在开发机械循环支持控制策略方面发挥重要作用。

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