Estimation of the Blood Pressure using Arterial Pressure-Volume Model

J. Jung, S. Yoon, J.H. Kim, I.C. Kim, A. Jeon, S. Ye, B.C. Kim, B. Shin, J. Ro, K. Nam, Y.J. Kim, G. Jeon
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引用次数: 20

Abstract

An analysis of the conventional blood pressure estimation method of the oscillometric sphygmomanometer was performed through a computer simulation using an arterial pressure-volume(APV) model. A more accurate blood pressure estimation method was proposed from the analysis. Traditionally, the maximum amplitude algorithm was applied on the oscillation waveforms of the APV model to get the mean arterial pressure and the characteristic ratio. In doing so, the shape of pressure waveforms and the cutoff frequency of high-pass filter circuitry strongly affected the estimation of mean arterial pressure and characteristic ratio. This resulted in errors when estimating blood pressure. To find an algorithm independent from the influence of waveform shapes and filter parameters, the volume oscillation of the APV model and the phase shift of the oscillation with FFT were identified by increasing the cuff pressure from 1 mmHg to 200 mmHg (1 mmHg per second). The phase shift between the ranges of volume oscillation was then only observed between the systolic and diastolic blood pressures. The same results were obtained from simulations performed on two different arterial blood pressure waveforms and one hyperthermia waveform.
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用动脉压-容积模型估计血压
采用动脉压-容积(APV)模型,对传统的振荡式血压计的血压估算方法进行了分析。通过分析,提出了一种更准确的血压估计方法。传统的方法是对APV模型的振荡波形进行最大振幅算法,得到平均动脉压和特征比。在此过程中,压力波形的形状和高通滤波电路的截止频率强烈影响平均动脉压和特征比的估计。这导致在估计血压时出现错误。为了找到一种不受波形形状和滤波器参数影响的算法,通过将袖带压力从1 mmHg增加到200 mmHg(每秒1 mmHg)来识别APV模型的体积振荡和振荡与FFT的相移。体积振荡范围的相移仅在收缩压和舒张压之间观察到。对两种不同的动脉血压波形和一种热疗波形进行了模拟,得到了相同的结果。
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