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Determination of Incremental Local Pulse Wave Velocity Using Arterial Diameter Waveform: Mathematical Modeling and Practical Implementation

机译:使用动脉直径波形测定增量局部脉搏波速度:数学建模与实用实施

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Background and Aim: Given the knowledge of the non-invasive assessment of local pulse wave velocity (PWV) for cardiovascular risk stratification, it is apparent that it is necessary to develop a practically feasible solution to measure and trace instantaneous variations in local PWV (incremental local PWV) from the target arteries.Methods: From the arterial blood pulse propagation characteristics, wave nature of the transmural pressure, and the distending vessel wall geometry, a mathematical model was developed to evaluate incremental local PWV using arterial diameter waveform. Its practical feasibility and the measurement accuracy were demonstrated in-vivo using a custom image-free ultrasound device, with the Bramwell-Hill method as the reference.Results: The proposed technique and developed device reliably captured incremental local PWV from the carotid artery. The locus of instantaneous variations in carotid local PWV obtained using the developed model traced the reference values, with a root-mean-square-error lesser than 0.05 m/s. Study results further established the practical feasibility and accuracy of this novel approach.Conclusion: The theoretical basis and measurement method of this work is a solution for non-invasive, real-time assessment of incremental local PWV and its locus.
机译:背景和目的:鉴于对局部脉搏波速度(PWV)的非侵入性评估进行心血管风险分层的知识,显然有必要开发实际上可行的解决方案以测量局部PWV的瞬时变化(增量来自目标动脉的局部PWV。从动脉血脉冲传播特性,透射压力的波形和脱气的血管壁几何形状,开发了一种数学模型来使用动脉直径波形评估增量局部PWV。其实际可行性和测量精度是使用自定义图像的超声装置的体内展示,用Bramwell-Hill方法作为参考。结果:所提出的技术和开发装置可靠地从颈动脉中捕获增量局部PWV。使用开发模型获得的颈动脉局部PWV瞬时变化的轨迹跟踪参考值,具有小于0.05m / s的根平均误差。研究结果进一步建立了这种新方法的实用可行性和准确性。结论:本作品的理论基础和测量方法是对增量局部PWV及其基因座的非侵入性,实时评估的解决方案。

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