M Javorka, D Švec, V Bikia, B Czippelová, N Stergiopulos, J Čerňanová Krohová
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引用次数: 0
Abstract
Arterial compliance (AC) is an important cardiovascular parameter characterizing mechanical properties of arteries. AC is significantly influenced by arterial wall structure and vasomotion, and it markedly influences cardiac load. A new method, based on a two-element Windkessel model, has been recently proposed for estimating AC as the ratio of the time constant T of the diastolic blood pressure decay and peripheral vascular resistance derived from clinically available stroke volume measurements and selected peripheral blood pressure parameters which are less prone to peripheral distortions. The aim of this study was to validate AC estimation using a virtual population generated by in silico model of the systemic arterial tree. In the second part of study, we analysed causal coupling between AC oscillations and variability of its potential determinants - systolic blood pressure and heart rate in healthy young human subjects. The pool of virtual subjects (n=3818) represented an extensive AC distribution. AC was estimated from the peripheral blood pressure curve and by the standard method from the aortic blood pressure curve. The proposed method slightly overestimated AC set in the model but both ACs were strongly correlated (r=0.94, p<0.001). In real data, we observed that AC dynamics was coupled with basic cardiovascular parameters variability independently of the autonomic nervous system state. In silico analysis suggests that AC can be reliably estimated by noninvasive method. The analysis of short-term AC variability together with its determinants could improve our understanding of factors involved in AC dynamics potentially improving assessment of AC changes associated with atherosclerosis process. Key words Arterial compliance, Cardiovascular model, Arterial blood pressure, Causal analysis, Volume-clamp photoplethysmography.
动脉顺应性(AC)是表征动脉力学特性的重要心血管参数。AC受动脉壁结构和血管舒缩的显著影响,并显著影响心脏负荷。最近提出了一种基于二元Windkessel模型的新方法,用于估计AC为舒张压衰减的时间常数T与外周血管阻力的比值,该比值来自临床可用的脑卒中容积测量和选择的不易引起外周扭曲的外周血压参数。本研究的目的是利用系统动脉树的计算机模型生成的虚拟种群来验证交流估计。在研究的第二部分,我们分析了健康年轻人交流振荡与其潜在决定因素——收缩压和心率变异性之间的因果耦合。虚拟受试者池(n=3818)代表广泛的AC分布。通过外周血压曲线和主动脉压曲线的标准方法估计AC。提出的方法略高估了模型中的AC集,但两个AC都是强相关的(r=0.94, p
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