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An extended soluble gas exchange model for estimating pulmonary perfusion. I. Derivation and implementation

机译:扩展的可溶气体交换模型,用于估算肺灌注。一,推导与实施

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A dynamic model for respiratory exchange of blood soluble gas is described. This model includes a general treatment of tidal breathing, an inhomogeneous lung comprising multiple distensible compartments, and nonlinearities due to multiple-gas effects. The motivation for this model is the continuing interest in estimating pulmonary perfusion from measurements of respiratory soluble gas exchange. Numerical simulation can be used to investigate the errors that result from simplifications made in the derivation of simpler models used for this purpose. Examples of such simplifications are the assumptions that ventilation is constant and unidirectional and that multiple soluble gases can be independently modeled. These results can delimit the boundaries within which perfusion estimates can be considered reliable. An example demonstrating the model and its numerical solution is presented.
机译:描述了用于血液可溶气体呼吸交换的动力学模型。该模型包括潮汐呼吸的一般治疗,包括多个可扩张隔室的不均匀肺,以及由于多种气体效应引起的非线性。该模型的动机是通过对呼吸中可溶性气体交换的测量来估计肺灌注的持续兴趣。数值模拟可用于研究由于简化而衍生出的误差,这些简化是出于简化目的而推导的。这种简化的示例是假设通风是恒定的且是单向的,并且可以对多种可溶性气体进行独立建模。这些结果可以划定边界,在该边界内可以将灌注估计视为可靠的。给出了一个演示模型及其数值解的例子。

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