Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX, USA.
Department of Biomedical Engineering, Texas A&M University, College Station, TX, USA.
Sci Rep. 2022 Jan 10;12(1):319. doi: 10.1038/s41598-021-03612-1.
Continuous monitoring of blood pressure (BP) is essential for the prediction and the prevention of cardiovascular diseases. Cuffless BP methods based on non-invasive sensors integrated into wearable devices can translate blood pulsatile activity into continuous BP data. However, local blood pulsatile sensors from wearable devices suffer from inaccurate pulsatile activity measurement based on superficial capillaries, large form-factor devices and BP variation with sensor location which degrade the accuracy of BP estimation and the device wearability. This study presents a cuffless BP monitoring method based on a novel bio-impedance (Bio-Z) sensor array built in a flexible wristband with small-form factor that provides a robust blood pulsatile sensing and BP estimation without calibration methods for the sensing location. We use a convolutional neural network (CNN) autoencoder that reconstructs an accurate estimate of the arterial pulse signal independent of sensing location from a group of six Bio-Z sensors within the sensor array. We rely on an Adaptive Boosting regression model which maps the features of the estimated arterial pulse signal to systolic and diastolic BP readings. BP was accurately estimated with average error and correlation coefficient of 0.5 ± 5.0 mmHg and 0.80 for diastolic BP, and 0.2 ± 6.5 mmHg and 0.79 for systolic BP, respectively.
连续监测血压(BP)对于预测和预防心血管疾病至关重要。基于集成到可穿戴设备中的非侵入式传感器的无袖带 BP 方法可以将血液脉动活动转换为连续 BP 数据。然而,可穿戴设备的局部血液脉动传感器由于基于浅表毛细血管、大尺寸设备以及传感器位置的 BP 变化,导致脉动活动测量不准确,从而降低了 BP 估计的准确性和设备的可佩戴性。本研究提出了一种基于新型生物阻抗(Bio-Z)传感器阵列的无袖带 BP 监测方法,该传感器阵列集成在具有小外形尺寸的柔性腕带中,可提供稳健的血液脉动感测和 BP 估计,而无需对感测位置进行校准方法。我们使用卷积神经网络(CNN)自动编码器,该自动编码器可以从传感器阵列中的六个 Bio-Z 传感器中重建动脉脉搏信号的准确估计,而与感测位置无关。我们依赖自适应提升回归模型,该模型将估计的动脉脉搏信号的特征映射到收缩压和舒张压读数。BP 的估计非常准确,平均误差和相关系数分别为 0.5±5.0mmHg 和 0.80 用于舒张压,以及 0.2±6.5mmHg 和 0.79 用于收缩压。