Epstein Sally, Vergnaud Anne-Claire, Elliott Paul, Chowienczyk Phil, Alastruey Jordi
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:1969-72. doi: 10.1109/EMBC.2014.6943999.
Elevated systemic vascular stiffness is associated with increased risk of cardiovascular disease. It has been suggested that the time difference between the two characteristic peaks of the digital volume pulse (DVP) measured at the finger using photoplethysmography is related to the stiffness of the arterial tree, and inversely proportional to the stiffness index (SI). However, the precise physical meaning of the SI and its relation to aortic pulse wave velocity (aPWV) is yet to be ascertained. In this study we investigated numerically the effect of changes in arterial wall stiffness, peripheral resistances, peripheral compliances or peripheral wave reflections on the SI and aPWV. The SI was calculated from the digital area waveform simulated using a nonlinear one-dimensional model of pulse wave propagation in a 75-artery network, which includes the larger arteries of the hand. Our results show that aPWV is affected by changes in aortic stiffness, but the SI is primarily affected by changes in the stiffness of all conduit vessels. Thus, the SI is not a direct substitute for aPWV. Moreover, our results suggest that peripheral reflections in the upper body delay the time of arrival of the first peak in the DVP. The second peak is predominantly caused by the impedance mismatch within the 75 arterial segments, rather than by peripheral reflections.
全身血管僵硬度升高与心血管疾病风险增加相关。有人提出,使用光电容积脉搏波描记法在手指处测量的数字容积脉搏(DVP)的两个特征峰之间的时间差与动脉树的僵硬度有关,且与僵硬度指数(SI)成反比。然而,SI的确切物理意义及其与主动脉脉搏波速度(aPWV)的关系尚待确定。在本研究中,我们通过数值模拟研究了动脉壁僵硬度、外周阻力、外周顺应性或外周波反射的变化对SI和aPWV的影响。SI是根据使用包含手部较大动脉的75动脉网络中脉搏波传播的非线性一维模型模拟的数字面积波形计算得出的。我们的结果表明,aPWV受主动脉僵硬度变化的影响,但SI主要受所有传导血管僵硬度变化的影响。因此,SI不能直接替代aPWV。此外,我们的结果表明,上半身的外周反射会延迟DVP中第一个峰的到达时间。第二个峰主要是由75个动脉节段内的阻抗失配引起的,而不是由外周反射引起的。