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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Continuous and noninvasive measurement of systolic and diastolic blood pressure by one mathematical model with the same model parameters and two separate pulse wave velocities.
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Continuous and noninvasive measurement of systolic and diastolic blood pressure by one mathematical model with the same model parameters and two separate pulse wave velocities.

机译:通过具有相同模型参数和两个独立脉搏波速度的一个数学模型连续无创地测量收缩压和舒张压。

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摘要

There is keen interest in continuous and noninvasive blood pressure (BP) measurement. However, many technologies have a shortcoming of complex mechanical structure. In our study, two arterial pulses are acquired by photoplethysmography (PPG) at ear and toe in order to explore a new method of measuring BP by pulse wave velocity (PWV). We previously validated and reported a BP-PWV mathematical model with measurements from humans with no evidence of cardiovascular disease, but were only able to determine PWV related to diastolic blood pressure (DBP). In this paper, we propose methods of identifying pulse transmit time (PTT) in low, normal and high systolic blood pressure (SBP) conditions. By averaging the PTT's of incident wave and reflected wave for non-systematic error reduction, we obtain a PWV that is suitable for estimating SBP. SBP and DBP are estimated by two separate PWV's based on the previously calibrated models. Experimental measurements are conducted on 26 subjects (age 19?±?1 and 60?±?1) with no evidence of cardiovascular disease. The measurement errors (Mean Deviation?=?2.16?mmHg (SBP) and 1.49?mmHg (DBP); Standard Deviation?=?6.23?mmHg (SBP) and 6.51?mmHg (DBP)) satisfy the accuracy criteria of Association for the Advancement of Medical Instrumentation. The results verify that SBP and DBP can be estimated by one mathematical model with the same model parameters and two separate PWV's.
机译:连续和无创血压(BP)测量引起了人们的浓厚兴趣。然而,许多技术具有复杂的机械结构的缺点。在我们的研究中,通过耳部和脚趾的光电容积描记术(PPG)获取了两个动脉脉冲,以探索一种通过脉搏波速度(PWV)测量血压的新方法。我们之前已经验证并报告了BP-PWV数学模型,该模型具有来自人类的测量值,而没有心血管疾病的证据,但是只能确定与舒张压(DBP)相关的PWV。在本文中,我们提出了在低,正常和高收缩压(SBP)条件下识别脉冲传输时间(PTT)的方法。通过对入射波和反射波的PTT进行平均以减少非系统误差,我们获得了适合估算SBP的PWV。 SBP和DBP由两个单独的PWV根据先前校准的模型估算。在没有心血管疾病迹象的26位受试者(年龄19?±?1和60?±?1)上进行了实验测量。测量误差(均值偏差=?2.16?mmHg(SBP)和1.49?mmHg(DBP);标准偏差?=?6.23?mmHg(SBP)和6.51?mmHg(DBP))满足协会的精度标准。医疗仪器的进步。结果证明,可以通过一个具有相同模型参数和两个独立PWV的数学模型来估计SBP和DBP。

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