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Increasing pulse wave velocity in a realistic cardiovascular model does not increase pulse pressure with age

机译:在现实的心血管模型中增加脉搏波速度不会随年龄增加脉搏压

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摘要

The mechanism of the well-documented increase in aortic pulse pressure (PP) with age is disputed. Investigators assuming a classical windkessel model believe that increases in PP arise from decreases in total arterial compliance (Ctot) and increases in total peripheral resistance (Rtot) with age. Investigators assuming a more sophisticated pulse transmission model believe PP rises because increases in pulse wave velocity (cph) make the reflected pressure wave arrive earlier, augmenting systolic pressure. It has recently been shown, however, that increases in cph do not have a commensurate effect on the timing of the reflected wave. We therefore used a validated, large-scale, human arterial system model that includes realistic pulse wave transmission to determine whether increases in cph cause increased PP with age. First, we made the realistic arterial system model age dependent by altering cardiac output (CO), Rtot, Ctot, and cph to mimic the reported changes in these parameters from age 30 to 70. Then, cph was theoretically maintained constant, while Ctot, Rtot, and CO were altered. The predicted increase in PP with age was similar to the observed increase in PP. In a complementary approach, Ctot, Rtot, and CO were theoretically maintained constant, and cph was increased. The predicted increase in PP was negligible. We found that increases in cph have a limited effect on the timing of the reflected wave but cause the system to degenerate into a windkessel. Changes in PP can therefore be attributed to a decrease in Ctot.
机译:有证据表明,随着年龄的增长,主动脉搏动压力(PP)升高的机制尚有争议。研究人员假设采用经典的风帆模型,认为PP的增加是由于总动脉顺应性(Ctot)的降低和总外周阻力(Rtot)随年龄的增加而引起的。假设更复杂的脉冲传输模型的研究人员认为PP升高是因为脉搏波速度(cph)的增加使反射压力波更早到达,从而增加了收缩压。然而,最近显示出,cph的增加对反射波的定时没有相应的影响。因此,我们使用了经过验证的大规模人体动脉系统模型,其中包括实际的脉搏波传输,以确定cph的增加是否会导致PP随年龄的增长而增加。首先,我们通过更改心输出量(CO),Rtot,Ctot和cph来模拟从30到70岁之间这些参数的报告变化,从而使年龄取决于实际的动脉系统。然后,理论上cph保持恒定,而Ctot Rtot和CO被更改。预测的PP随着年龄的增长与观察到的PP的增长相似。在补充方法中,Ctot,Rtot和CO在理论上保持恒定,并且cph增加。 PP的预测增加可以忽略不计。我们发现cph的增加对反射波的时间影响有限,但会导致系统退化为风向标。因此,PP的变化可归因于Ctot的降低。

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