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Simultaneous Automatic Control of Oxygen and Carbon Dioxide Blood Gases During Cardiopulmonary Bypass

机译:体外循环过程中氧气和二氧化碳血气的同时自动控制

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摘要

In this work an automatic control strategy is presented for the simultaneous control of oxygen and carbon dioxide blood gas partial pressures to be used during cardiopulmonary bypass surgery with heart–lung machine support. As the exchange of blood gases in the artificial extracorporeal lung is a highly nonlinear process comprising varying time delays, uncertainties, and time-varying parameters, it is currently being controlled manually by specially trained perfusionist staff. The new control strategy includes a feedback linearization routine with augmented time-delay compensation and two external linear gain-scheduled controllers, for partial oxygen and carbon dioxide pressures. The controllers were robustly tuned and tested in simulations with a detailed artificial lung (oxygenator) model in cardiopulmonary bypass conditions. Furthermore, the controllers were implemented in an ex vivo experiment using fresh porcine blood as a substitute fluid and a special deoxygenation technique to simulate a patient undergoing cardiopulmonary bypass. Both controllers showed robust stability during the experiments and a good disturbance rejection to extracorporeal blood flow changes. This automatic control strategy is proposed to improve patient's safety by fast control reference tracking and good disturbance rejection under varying conditions.
机译:在这项工作中,提出了一种自动控制策略,用于同时控制在心肺机支撑的心肺搭桥手术中使用的氧气和二氧化碳血气分压。由于人工体外肺中血液气体的交换是一个高度非线性的过程,包括不同的时间延迟,不确定性和随时间变化的参数,因此,目前它是由经过专门培训的灌注人员手动控制的。新的控制策略包括带有增加的延时补偿的反馈线性化程序和两个外部线性增益预定控制器,用于部分氧气和二氧化碳压力。在详细的人工肺(氧气发生器)模型中,在体外循环条件下对控制器进行了稳健的调试和测试。此外,该控制器是在离体实验中使用新鲜猪血作为替代液和特殊的脱氧技术来模拟经历体外循环的患者而实施的。两种控制器在实验过程中均显示出稳定的稳定性,并对体外血流变化具有良好的抑制干扰作用。提出了这种自动控制策略以通过快速控制参考跟踪和在各种情况下良好的干扰抑制来提高患者的安全性。

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