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New method for estimating arterial pulse wave velocity at single site

机译:一种估计单部位动脉脉搏波速度的新方法

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The clinical importance of measuring local pulse wave velocity (PWV), has encouraged researchers to develop several local methods to estimate it. In this work, we proposed a new method, the sumof- squares method S 2 PR , that allows the estimations of PWV by using simultaneous measurements of blood pressure (P) and arterial diameter (D) at single-location. Pulse waveforms generated by: (1) two-dimensional (2D) fluid-structure interaction simulation (FSI) in a compliant tube, (2) onedimensional (1D) model of 55 larger human systemic arteries and (3) experimental data were used to validate the new formula and evaluate several classical methods. The performance of the proposed method was assessed by comparing its results to theoretical PWV calculated from the parameters of the model and/or to PWV estimated by several classical methods. It was found that values of PWV obtained by the developed method S 2 PR are in good agreement with theoretical ones and with those calculated by PA-loop and D2P-loop. The difference between the PWV calculated by S 2 PR and PA-loop does not exceed 1% when data from simulations are used, 3% when in vitro data are used and 5% when in vivo data are used. In addition, this study suggests that estimated PWV from arterial pressure and diameter waveforms provide correct values while methods that require flow rate (Q) and velocity (U) overestimate or underestimate PWV.
机译:测量局部脉搏波速度(PWV)的临床重要性鼓励了研究人员开发几种估计局部脉搏波速度的方法。在这项工作中,我们提出了一种新的方法,即平方和方法S 2 PR,该方法可以通过在单个位置同时测量血压(P)和动脉直径(D)来估计PWV。通过以下方式产生的脉冲波形:(1)在顺应性试管中进行二维(2D)流体-结构相互作用模拟(FSI),(2)使用55个较大的人体系统动脉的一维(1D)模型和(3)实验数据来验证新公式并评估几种经典方法。通过将其结果与通过模型参数计算出的理论PWV和/或通过几种经典方法估算出的PWV进行比较,来评估所提出方法的性能。结果发现,通过改进的方法S 2 PR获得的PWV值与理论值以及通过PA回路和D2P回路计算的值相吻合。当使用来自模拟的数据时,由S 2 PR和PA回路计算的PWV之间的差异不超过1%,当使用体外数据时使用3%,而使用体内数据时使用5%。此外,这项研究表明,从动脉压和直径波形估计的PWV提供正确的值,而要求流速(Q)和速度(U)的方法则高估或低估了PWV。

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