Unit of Measurements and Biomedical Instrumentation, Department of Engineering, Università Campus Bio-Medico di Roma, Via Alvaro del Portillo, 00128 Rome, Italy.
Unit of Nonlinear Physics and Mathematical Models, Department of Engineering, University of Rome Campus Bio-Medico, 00128 Rome, Italy.
Biosensors (Basel). 2022 May 26;12(6):363. doi: 10.3390/bios12060363.
Wearables are valuable solutions for monitoring a variety of physiological parameters. Their application in cardiorespiratory monitoring may significantly impact global health problems and the economic burden related to cardiovascular and respiratory diseases. Here, we describe a soft biosensor capable of monitoring heart (HR) and respiratory (RR) rates simultaneously. We show that a skin-interfaced biosensor based on fiber optics (i.e., the smart patch) is capable of estimating HR and RR by detecting local ribcage strain caused by breathing and heart beating. The system addresses some of the main technical challenges that limit the wide-scale use of wearables, such as the simultaneous monitoring of HR and RR via single sensing modalities, their limited skin compliance, and low sensitivity. We demonstrate that the smart patch estimates HR and RR with high fidelity under different respiratory conditions and common daily body positions. We highlight the system potentiality of real-time cardiorespiratory monitoring in a broad range of home settings.
可穿戴设备是监测各种生理参数的有价值的解决方案。它们在心肺监测中的应用可能会对全球健康问题和与心血管及呼吸系统疾病相关的经济负担产生重大影响。在这里,我们描述了一种能够同时监测心率(HR)和呼吸率(RR)的软生物传感器。我们表明,一种基于光纤的皮肤接口生物传感器(即智能贴片)能够通过检测呼吸和心跳引起的局部肋骨应变来估计 HR 和 RR。该系统解决了一些限制可穿戴设备广泛应用的主要技术挑战,例如通过单一传感模式同时监测 HR 和 RR、其有限的皮肤顺应性和低灵敏度。我们证明,智能贴片在不同的呼吸条件和常见的日常体位下都能高度准确地估计 HR 和 RR。我们强调了该系统在广泛的家庭环境中进行实时心肺监测的潜力。