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Estimation of pulse transit time using two diametric blood pressure waveform measurements.

机译:使用两个直径血压波形测量值估算脉搏传播时间。

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摘要

This paper presents a novel method to estimate the aortic-to-peripheral pulse transit time (PTT) using the blood pressure waveforms measured at two diametric peripheral locations, for instance, one on an upper extremity and the other on a lower extremity. The method is based on a computational relationship between the two peripheral blood pressures, which is derived by first relating each peripheral blood pressure to a common central aortic blood pressure. The parameters of the computational relationship for an individual subject can be identified by fitting them to two peripheral blood pressure waveform measurements, thereby characterizing the cardiovascular dynamics, from which absolute changes in the PTT between the central aorta and each peripheral measurement site can be determined. The strength of the method is that it does not require any a priori knowledge of the peripheral measurement locations nor of the physiologic condition of the cardiovascular system. Experimental results are provided from five healthy swine subjects whose actual PTT experimentally varied from 44.9 ms to 163.0 ms (76.7 ms mean+/-26.4 ms SD). Compared to the reference PTT measurement, the novel method proposed in this paper estimated PTT within 3.7 ms mean+/-4.2 ms SD after initial calibration.
机译:本文提出了一种新的方法来估计主动脉到外周脉冲的传输时间(PTT),该方法使用在两个直径的外围位置(例如,一个在上肢,另一个在下肢)测量的血压波形。该方法基于两个外周血压之间的计算关系,这是通过首先将每个外周血压与共同的主动脉血压相关联而得出的。可以通过将其拟合到两个外周血压波形测量值来确定单个对象的计算关系参数,从而表征心血管动力学,由此可以确定中央主动脉和每个外周测量部位之间PTT的绝对变化。该方法的优势在于它不需要任何外围测量位置的先验知识,也不需要心血管系统的生理状况。由五名健康猪受试者提供了实验结果,他们的实际PTT实验值从44.9毫秒变化到163.0毫秒(76.7毫秒平均值+/- 26.4毫秒标准差)。与参考PTT测量相比,本文提出的新方法在初始校准后在3.7毫秒平均值+/- 4.2毫秒SD范围内估算了PTT。

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