Namkoong Myeong, McMurray Justin, Branan Kimberly, Hernandez Joanna, Gandhi Mishika, Ida-Oze Samuel, Cote Gerard, Tian Limei
Department of Biomedical Engineering, and Center for Remote Health Technologies and Systems, Texas A&M University, College Station, TX 77843, USA.
Adv Mater Technol. 2024 Feb 5;9(3). doi: 10.1002/admt.202301407. Epub 2023 Dec 10.
Wearable devices for continuous monitoring of arterial pulse waves have the potential to improve the diagnosis, prognosis, and management of cardiovascular diseases. These pulse wave signals are often affected by the contact pressure between the wearable device and the skin, limiting the accuracy and reliability of hemodynamic parameter quantification. Here, we report a continuous hemodynamic monitoring device that enables the simultaneous recording of dual-channel bioimpedance and quantification of pulse wave velocity (PWV) used to calculate blood pressure (BP). Our investigations demonstrate the effect of contact pressure on bioimpedance and PWV. The pulsatile bioimpedance magnitude reached its maximum when the contact pressure approximated the mean arterial pressure of the subject. We employed PWV to continuously quantify BP while maintaining comfortable contact pressure for prolonged wear. The mean absolute error and standard deviation of the error compared to the reference value were determined to be 0.1 ± 3.3 mmHg for systolic BP, 1.3 ± 3.7 mmHg for diastolic BP, and -0.4 ± 3.0 mmHg for mean arterial pressure when measurements were conducted in the lying down position. This research demonstrates the potential of wearable dual-bioimpedance sensors with contact pressure guidance for reliable and continuous hemodynamic monitoring.
用于连续监测动脉脉搏波的可穿戴设备有潜力改善心血管疾病的诊断、预后和管理。这些脉搏波信号常常受到可穿戴设备与皮肤之间接触压力的影响,限制了血流动力学参数量化的准确性和可靠性。在此,我们报告一种连续血流动力学监测设备,它能够同时记录双通道生物阻抗并量化用于计算血压(BP)的脉搏波速度(PWV)。我们的研究证明了接触压力对生物阻抗和PWV的影响。当接触压力接近受试者的平均动脉压时,搏动性生物阻抗幅度达到最大值。我们利用PWV连续量化血压,同时保持舒适的接触压力以实现长时间佩戴。在卧位进行测量时,与参考值相比,收缩压的平均绝对误差和误差标准差分别为0.1±3.3 mmHg,舒张压为1.3±3.7 mmHg,平均动脉压为-0.4±3.0 mmHg。这项研究证明了具有接触压力引导的可穿戴双生物阻抗传感器在可靠且连续的血流动力学监测方面的潜力。