指尖ECG和PPG信号的连续外周血压测量

Karen M. Lee, Z. Qian, R. Yabuki, B. Du, H. Kino, T. Fukushima, K. Kiyoyama, Tetsu Tanaka
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引用次数: 4

摘要

每天测量血压(BP)的好习惯有助于我们保持健康或监测高血压状况。然而,传统的使用压力袖带测量血压的方法有许多缺点。为了消除这种压力袖带的使用,我们提出了一种使用脉冲到达时间(PAT)测量血压的系统。这种PAT可以通过心电图(ECG)和光容积脉搏波(PPG)信号的r峰之间的时间差来测量。在我们的系统中,我们使用自己设计的ECG和PPG传感器来获取这两个信号。我们的传感器采用0.18 μm CMOS技术制造,记录面积分别约为2.53 mm2和6.25 mm2。我们的心电传感器具有可变的放大增益,可以实现60db的最大增益。此外,它还具有宽截止频率为0.1- 200hz的高通滤波器和宽截止频率为0.2- 10khz的低通滤波器。我们的心电电路的设计使我们能够使用指尖而不使用接地电极获得心电信号。这种紧凑的系统有可能在未来成为一种无线可穿戴设备。将测得的PAT拟合到数学模型中,得到无袖套的BP读数。使用袖带和不带袖带的参考血压图显示收缩压(SBP)的相关性为r = 0.83。系统收缩压和舒张压(DBP)的平均绝对差值分别为6.75 mmHg和6.08 mmHg,完全通过了IEEE制定的严格标准。在未来,我们的系统将与使用的血压计进行比较,血压计是金标准,以进一步评估其准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous Peripheral Blood Pressure Measurement with ECG and PPG Signals at Fingertips
A good habit of measuring blood pressure (BP) daily is helpful for us to stay healthy or to monitor hypertensive conditions. However, the conventional method of measuring BP using a pressure cuff has many weaknesses. In order to eliminate the use of this pressure cuff, we proposed a system using the pulse arrival time (PAT) to measure BP. This PAT can be measured using time difference between the R-peaks of electrocardiogram (ECG) and photoplethysmography (PPG) signals. In our system, we obtained these two signals by using our self-designed ECG and PPG sensors. Our sensors were fabricated in 0.18 μm CMOS technology with a small recording area of about 2.53 mm2and 6.25 mm2, respectively. Our ECG sensor has variable amplifying gains and can achieve a total maximum gain of 60 dB. Besides that, it has a high pass filter with wide cutoff frequencies between 0.1-200 Hz, and low pass filter with cutoff frequencies of 0.2-10 kHz. The design of our ECG circuit allows us to obtain the ECG signals using fingertips and without using a ground electrode. This compact system has the potential to become a wireless wearable in the future. The measured PAT was fitted into a mathematical model and cuff-less BP readings were obtained. A plot of reference BP using oscillometric cuff and cuff-less BP showed a good correlation of r = 0.83 for systolic blood pressure (SBP). The SBP and diastolic blood pressure (DBP) mean absolute difference for the system are 6.75 mmHg and 6.08 mmHg respectively, which fairly passed the strict standard set by IEEE. In the future, our system will be compared with the use of sphygmomanometer, which is the gold standard, to further evaluate its accuracies.
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