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Augmented blood pressure measurement through the noninvasive estimation of physiological arterial pressure variability

机译:通过无创估计生理动脉压变异性来增强血压测量

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摘要

Current noninvasive blood pressure (BP) measurement methods, such as the oscillometric method, estimate the systolic and diastolic blood pressure (SBP and DBP) at two random instants in time and do not take into account the natural variability in BP. The standard for automated BP devices sets a maximum allowable system error of ±5mmHg, even though natural BP variability often exceeds these limits. This paper proposes a new approach using simultaneous recordings of the oscillometric and continuous arterial pulse waveforms to augment the conventional noninvasive measurement by providing (1) the mean SBP and DBP over the measurement interval and the associated confidence intervals of the mean, (2) the standard deviation of SBP and DBP over the measurement interval, which indicates the degree of fluctuation in BP and (3) an indicator as to whether or not the oscillometric reading is an outlier. Recordings with healthy subjects demonstrate the potential utility of this approach to characterize BP, to detect outlier measurements, and that it does not suffer from bias relative to the conventional oscillometric method.
机译:当前的非侵入式血压(BP)测量方法(例如示波法)会在两个随机时刻估计收缩压和舒张压(SBP和DBP),并且没有考虑BP的自然变异性。自动化BP设备的标准将最大允许系统误差设置为±5mmHg,即使BP的自然可变性通常超过了这些限制。本文提出了一种通过同时记录示波和连续动脉脉搏波形的新方法,以通过提供(1)在测量间隔和平均值的相关置信区间内提供(1)平均SBP和DBP来增强传统的非侵入性测量,(2) SBP和DBP在测量间隔内的标准偏差,它表示BP的波动程度,并且(3)示波法读数是否是异常值的指示器。与健康受试者的记录表明,该方法可用于表征BP,检测异常值,并且相对于传统示波法没有偏差。

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