家庭保健中具有伪影容限的脉冲传递时间测量方法

N. Shiraishi, Y. Sankai
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引用次数: 3

摘要

在家中测量动脉硬度对预防和治疗动脉硬化具有重要意义。脉搏波速度(PWV)是动脉刚度的指标之一。我们提出了一种在家测量PWV的装置。该器件测量脉冲传输时间(PTT),并利用PTT计算PWV。PTT测量采用心电图(ECG)和光容积描记图(PPTG)。设备的操作者是用户自己。在家中,由于医护人员不在家,很难判断测量条件是否合适。运动伪影也是会出现的问题。带伪影公差的方法既能提高测量精度,又能减少重复测量,从而自动抑制运动伪影。因此,本研究的目的是提出一种具有伪影容限的脉冲传递时间测量方法,并对其测量精度进行评价。我们提出了用平均值和标准差(SD)排除PTT异常值的方法。利用30秒内PPTG的r波和峰值计算平均值和标准差。利用研制的测量系统进行了心电或PPTG存在故意运动伪影的实验。为了进行评估,我们使用了已开发的测量系统,该系统具有带伪影公差的脉冲传递时间测量方法。当ECG或PPTG有伪影时,测量系统的精度为7.97%。低于现有医疗设备的8.4%的精度。从而确定了具有足够工件公差的建议方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pulse transit time measurement method with artifact tolerance for home healthcare
To measure the arterial stiffness at home is important in order to prevent and treat arteriosclerosis. Pulse wave velocity (PWV) is one of the indexes of arterial stiffness. We have proposed a device that measures PWV at home. The device measures pulse transit time (PTT) and calculates PWV using the PTT. The PTT measurement is used electrocardiogram (ECG) and photoplethysmogram (PPTG). The operator of the device is user oneself. At home, it is difficult to judge whether the measurement condition is appropriate because medical staff is not at home. Motion artifacts are problem that occur as well. The method with artifact tolerance is useful for both increasing the measuring precision and decreasing re-measurement to suppress the motion artifact automatically. Therefore, the purpose of this research is to propose a pulse transit time measurement method with artifact tolerance, and to evaluate its measurement precision. We proposed the method that outlier of PTT is excluded using an average and a standard deviation (SD). The average and the SD are calculated using R-wave and peaks of PPTG in 30 seconds. An experiment that ECG or PPTG has deliberate motion artifacts was performed with developed measurement system. To evaluate, we used the developed measurement system that has the pulse transit time measurement method with artifact tolerance. Precision of the measurement system was 7.97% when ECG or PPTG with the artifact. It was smaller than 8.4% that is precision of the existing medical equipment. Therefore the proposal method that has sufficient artifact tolerance was confirmed.
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