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A Model-based Calibration Method for Noninvasive and Cuffless Measurement of Arterial Blood Pressure

机译:一种基于模型的非侵入性和无齿状测量动脉血压的校准方法

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It has been accepted by some researchers that pulse transit time (PTT) is correlated with arterial blood pressure (ABP). However, the applications of PTT-based approach for BP measurement are limited due to the lack of convenient calibration method. This paper aims to propose an innovative model-based calibration system, which makes use of pressure change during air deflation of arm cuff to obtain the calibration curve for each individual. Experimental results on ten healthy subjects show that the derived calibration curve has good linearity (R=-0.90, p<0.05), which led to the acceptable prediction errors (1.1±6.7mmHg for mean BP, 3.6±6.9mmHg for systolic BP and 2.1±8.2mmHg for diastolic BP) for the changed pressure of the tested subjects after exercise. The preliminary result indicates that the proposed calibration method is promising to be used for noninvasive and cuffless measurement of ABP in wearable device.
机译:它已被一些研究人员接受,即脉冲过渡时间(PTT)与动脉血压(ABP)相关。然而,由于缺乏方便的校准方法,基于PTT的BP测量方法的应用受到限制。本文旨在提出一种创新的基于模型的校准系统,它在臂袖口的空气通气期间利用压力变化,以获得每个单独的校准曲线。 10个健康主题的实验结果表明,衍生的校准曲线具有良好的线性度(r = -0.90,p <0.05),其导致可接受的预测误差(1.1±6.7mmhg,用于平均bp,3.6±6.9mmHg,用于收缩压增量BP和2.1±8.2mmHg用于舒张压型BP)在运动后改变测试受试者的压力。初步结果表明,所提出的校准方法是有希望用于可穿戴设备中ABP的非侵入性和无齿状测量。

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