Namkoong Myeong, Baskar Balaji, Singh Lakhvir, Guo Heng, McMurray Justin, Branan Kimberly, Rahman Md Saifur, Hsiao Chin-To, Kuriakose Josh, Hernandez Joanna, Arikan Arda A, Garza-Rivera Luis E, Coté Gerard L, Tian Limei
Department of Biomedical Engineering, and Center for Remote Health Technologies and Systems, Texas A&M University, College Station, TX 77843, USA.
The Awty International School, Houston, TX 77055, USA.
Adv Mater Technol. 2023 Aug 11;8(15). doi: 10.1002/admt.202300158. Epub 2023 May 4.
Continuous monitoring of arterial blood pressure is clinically important for the diagnosis and management of cardiovascular diseases. Soft electronic devices with skin-like properties show promise in a wide range of applications, including the human-machine interface, the Internet of things, and health monitoring. Here, we report the use of add-on soft electronic interfaces to address the connection challenges between soft electrodes and rigid data acquisition circuitry for bioimpedance monitoring of cardiac signals, including heart rate and cuffless blood pressure. Nanocomposite films in add-on electrodes provide robust electrical and mechanical contact with the skin and the rigid circuitry. We demonstrate bioimpedance sensors composed of add-on electrodes for continuous blood pressure monitoring with high accuracy. Specifically, the bioimpedance collected with add-on nanocomposite electrodes shows a signal-to-noise ratio of 37.0 dB, higher than the ratio of 25.9 dB obtained with standard silver/silver chloride (Ag/AgCl gel) electrodes. Although the sample set is low, the continuously measured systolic and diastolic blood pressure offer accuracy of -2.0 ± 6.3 mmHg and -4.3 ± 3.9 mmHg, respectively, confirming the grade A performance based on the IEEE standard. These results show promise in bioimpedance measurements with add-on soft electrodes for cuffless blood pressure monitoring.
连续监测动脉血压对心血管疾病的诊断和管理具有重要的临床意义。具有类皮肤特性的柔性电子设备在包括人机接口、物联网和健康监测在内的广泛应用中显示出前景。在此,我们报告了使用附加柔性电子接口来解决软电极与用于心脏信号生物阻抗监测(包括心率和无袖带血压)的刚性数据采集电路之间的连接挑战。附加电极中的纳米复合膜可与皮肤和刚性电路提供稳固的电气和机械接触。我们展示了由附加电极组成的生物阻抗传感器,用于高精度的连续血压监测。具体而言,用附加纳米复合电极采集的生物阻抗显示出37.0 dB的信噪比,高于用标准银/氯化银(Ag/AgCl凝胶)电极获得的25.9 dB的信噪比。尽管样本量较小,但连续测量的收缩压和舒张压的准确度分别为-2.0±6.3 mmHg和-4.3±3.9 mmHg,根据IEEE标准确认了A级性能。这些结果表明,使用附加软电极进行无袖带血压监测的生物阻抗测量具有前景。