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Dynamic Characteristics of Mechanical Ventilation System of Double Lungs with Bi-Level Positive Airway Pressure Model

机译:双水平气道正压模型的双肺机械通气系统动态特性

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摘要

In recent studies on the dynamic characteristics of ventilation system, it was considered that human had only one lung, and the coupling effect of double lungs on the air flow can not be illustrated, which has been in regard to be vital to life support of patients. In this article, to illustrate coupling effect of double lungs on flow dynamics of mechanical ventilation system, a mathematical model of a mechanical ventilation system, which consists of double lungs and a bi-level positive airway pressure (BIPAP) controlled ventilator, was proposed. To verify the mathematical model, a prototype of BIPAP system with a double-lung simulators and a BIPAP ventilator was set up for experimental study. Lastly, the study on the influences of key parameters of BIPAP system on dynamic characteristics was carried out. The study can be referred to in the development of research on BIPAP ventilation treatment and real respiratory diagnostics.
机译:在最近的通风系统动态特性研究中,人们认为人只有一个肺,而双肺对气流的耦合作用无法说明,这对于患者的生命维持至关重要。在本文中,为了说明双肺对机械通风系统流动动力学的耦合作用,提出了一种机械通风系统的数学模型,该模型由双肺和双水平气道正压(BIPAP)控制的呼吸机组成。为了验证数学模型,建立了带有双肺模拟器和BIPAP呼吸机的BIPAP系统的原型进行实验研究。最后,对BIPAP系统关键参数对动力特性的影响进行了研究。该研究可在BIPAP通气治疗和实际呼吸诊断的研究进展中参考。

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