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A Simple Adaptive Transfer Function for Deriving the Central Blood Pressure Waveform from a Radial Blood Pressure Waveform

机译:从径向血压波形导出中心血压波形的简单自适应传递函数

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摘要

Generalized transfer functions (GTFs) are available to compute the more relevant central blood pressure (BP) waveform from a more easily measured radial BP waveform. However, GTFs are population averages and therefore may not adapt to variations in pulse pressure (PP) amplification (ratio of radial to central PP). A simple adaptive transfer function (ATF) was developed. First, the transfer function is defined in terms of the wave travel time and reflection coefficient parameters of an arterial model. Then, the parameters are estimated from the radial BP waveform by exploiting the observation that central BP waveforms exhibit exponential diastolic decays. The ATF was assessed using the original data that helped popularize the GTF. These data included radial BP waveforms and invasive reference central BP waveforms from cardiac catheterization patients. The data were divided into low, middle, and high PP amplification groups. The ATF estimated central BP with greater accuracy than GTFs in the low PP amplification group (e.g., central systolic BP and PP root-mean-square-errors of 3.3 and 4.2 mm Hg versus 6.2 and 7.1 mm Hg; p ≤ 0.05) while showing similar accuracy in the higher PP amplification groups. The ATF may permit more accurate, non-invasive central BP monitoring in elderly and hypertensive patients.
机译:通用传递函数(GTF)可用于根据更容易测量的径向BP波形来计算更相关的中心血压(BP)波形。但是,GTF是人口平均值,因此可能不适应脉冲压力(PP)放大的变化(径向PP与中心PP的比率)。开发了一种简单的自适应传递函数(ATF)。首先,根据波传播时间和动脉模型的反射系数参数定义传递函数。然后,通过利用中心BP波形表现出指数舒张衰减的观察,从径向BP波形估计参数。使用有助于普及GTF的原始数据对ATF进行了评估。这些数据包括来自心脏导管插入术患者的径向BP波形和侵入性参考中心BP波形。数据分为低,中和高PP扩增组。在低PP扩增组中,ATF估计的中央BP比GTF的准确性更高(例如,中央收缩BP和PP的均方根误差分别为3.3和4.2mmHg,而6.2和7.1mm Hg; p≤0.05),在较高的PP扩增组中具有相似的准确性。 ATF可能允许对老年和高血压患者进行更准确,无创的中央BP监测。

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