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Vascular resistance at low frequencies may explain the physiological role of Mayer waves: A fractal arterial tree model study

机译:低频下的血管抗性可以解释Mayer波的生理作用:分形动脉曲线模型研究

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We numerically investigate a 1-D mathematical model of blood flow related with harmonic blood pressure modes (BP) in the fractal model of a human arterial tree [1]. We calculated the model admittance: inverse of the Total Peripheral Resistance (TPR) as a function of frequency. We show that the peak of admittance (maximum flow) may appear at low frequency, below 1 Hz. Total flow in presence of such low frequency oscillations is higher than without it. Introduction of these oscillations by cardiovascular regulatory loops may provide a supplementary mechanism which can increase the total blood flow (venous return) in situations of increased demand. The result may add new value to the analysis of the Mayer waves.
机译:我们在人体动脉树分形模型中研究了与谐波血压模式(BP)相关的1-D数学模型[1]。我们计算了模型导纳:作为频率函数的总外围电阻(TPR)的逆。我们表明,进入的峰值(最大流量)可能出现在低频,低于1 Hz。存在这种低频振荡的总流量高于没有它的流量。通过心血管调节环引入这些振荡可能提供补充机制,可以在增加需求的情况下增加总血流量(静脉回报)。结果可以为Mayer波的分析添加新值。

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