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A mathematical model for the first derivative wave analysis of the volumetric capnogram from the perspective of erythrocyte motion profiles

机译:从红细胞运动曲线角度分析容积二氧化碳图的一阶导数波的数学模型

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摘要

Current trends in monitoring system are leading to the adoption of volumetric capnogram (Vcap). The first derivative wave analysis (FDWA) of Vcap represented the cardiogenic oscillations (CarO) as a propagated wave and the slope of phase III (SIII) as a constant. Until today the genesis of CarO and SIII is however under debate. In this study, we defined motion profiles of erythrocytes in the pulmonary parenchyma as pulsated-run and random-walk, on the basis of which we obtained a new mathematical expression describing FDWA of Vcap. The mathematical model of Vcap provided theoretical explanation concerned with motion profiles of erythrocytes about the genesis of CarO and SIII. As the results, the mathematical model predicted the close relationship between SIII and the transfer factor of carbon monoxide, which will be used for estimating validity of this mathematical model. In addition, the velocity of propagated wave in the phase III was suggested as a new physiological variable to estimate elastic properties of pulmonary arterioles, and a new measuring method of VD was proposed based on the theoretical reason, as well. Clinical investigations of the new VD to test its efficacy of monitoring are needed.
机译:监视系统的当前趋势正在导致采用体积二氧化碳图(Vcap)。 Vcap的一阶导数波分析(FDWA)将心源性振荡(CarO)表示为传播波,而III相的斜率(SIII)表示为常数。直到今天,CarO和SIII的起源仍在争论中。在这项研究中,我们将肺实质中红细胞的运动曲线定义为脉动奔跑和随机游走,在此基础上我们获得了描述Vcap FDWA的新数学表达式。 Vcap的数学模型提供了有关CarO和SIII起源的红细胞运动曲线的理论解释。结果,该数学模型预测了SIII与一氧化碳的传递因子之间的密切关系,这将用于评估该数学模型的有效性。此外,第三阶段的传播波速度被认为是估计肺小动脉弹性特性的新的生理变量,并且基于理论原因也提出了一种新的VD测量方法。需要对新的VD进行临床研究,以测试其监视效果。

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