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首页> 外文期刊>American Journal of Physiology >A database of virtual healthy subjects to assess the accuracy of foot-to-foot pulse wave velocities for estimation of aortic stiffness
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A database of virtual healthy subjects to assess the accuracy of foot-to-foot pulse wave velocities for estimation of aortic stiffness

机译:虚拟健康受试者的数据库,以评估脚踏脉冲波速度的准确性,以估计主动脉僵硬度

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While central (carotid-femoral) foot-to-foot pulse wave velocity (PWV) is considered to be the gold standard for the estimation of aortic arterial stiffness, peripheral foot-to-foot PWV (brachial-ankle, femoral-ankle, and carotid-radial) are being studied as substitutes of this central measurement. We present a novel methodology to assess theoretically these computed indexes and the hemodynamics mechanisms relating them. We created a database of 3,325 virtual healthy adult subjects using a validated one-dimensional model of the arterial hemodynamics, with cardiac and arterial parameters varied within physiological healthy ranges. For each virtual subject, foot-to-foot PWV was computed from numerical pressure waveforms at the same locations where clinical measurements are commonly taken. Our numerical results confirm clinical observations: 1) carotid-femoral PWV is a good indicator of aortic stiffness and correlates well with aortic PWV; 2) brachial-ankle PWV overestimates aortic PWV and is related to the stiffness and geometry of both elastic and muscular arteries; and 3) muscular PWV (carotid-radial, femoral-ankle) does not capture the stiffening of the aorta and should therefore not be used as a surrogate for aortic stiffness. In addition, our analysis highlights that the foot-to-foot PWV algorithm is sensitive to the presence of reflected waves in late diastole, which introduce errors in the PWV estimates. In this study, we have created a database of virtual healthy subjects, which can be used to assess theoretically the efficiency of physiological indexes based on pulse wave analysis.
机译:虽然中央(颈动脉 - 股骨)足脉波速度(PWV)被认为是估计主动脉僵硬,外围足部足部PWV(肱踝,股骨脚踝和颈动脉径向)正在研究该中央测量的替代品。我们提出了一种新的方法,以评估理论上这些计算的指标和与它们相关的血流动力学机制。我们使用验证的动脉血流动力学模型创建了3,325个虚拟健康成年人的数据库,心脏和动脉参数在生理健康范围内变化。对于每个虚拟主体,从常用临床测量的同一位置的数值压力波形计算脚踏PWV。我们的数值结果证实了临床观察结果:1)颈动脉股PWV是主动脉僵硬度的良好指标,与主动脉PWV良好相关; 2)肱踝关节PWV高估主动脉PWV,与弹性和肌肉动脉的刚度和几何相关; 3)肌肉PWV(颈动脉径向,股骨踝)不会捕获主动脉的加强,因此不应用作主动脉僵硬的替代品。此外,我们的分析突出显示脚踏PWV算法对后期舒张中的反射波的存在敏感,这引入了PWV估计中的误差。在这项研究中,我们创建了一个虚拟健康科目的数据库,其可用于基于脉冲波分析理论上评估生理指标的效率。

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