Unit of Automatic Control, Departmental Faculty of Engineering, Università Campus Bio-Medico di Roma, Via Alvaro del Portillo 21, 00128 Rome, Italy.
Unit of Measurements and Biomedical Instrumentation, Departmental Faculty of Engineering, Università Campus Bio-Medico di Roma, Via Alvaro del Portillo 21, 00128 Rome, Italy.
Sensors (Basel). 2022 Aug 3;22(15):5805. doi: 10.3390/s22155805.
Recently, the ever-growing interest in the continuous monitoring of heart function in out-of-laboratory settings for an early diagnosis of cardiovascular diseases has led to the investigation of innovative methods for cardiac monitoring. Among others, wearables recording seismic waves induced on the chest surface by the mechanical activity of the heart are becoming popular. For what concerns wearable-based methods, cardiac vibrations can be recorded from the thorax in the form of acceleration, angular velocity, and/or displacement by means of accelerometers, gyroscopes, and fiber optic sensors, respectively. The present paper reviews the currently available wearables for measuring precordial vibrations. The focus is on sensor technology and signal processing techniques for the extraction of the parameters of interest. Lastly, the explored application scenarios and experimental protocols with the relative influencing factors are discussed for each technique. The goal is to delve into these three fundamental aspects (i.e., wearable system, signal processing, and application scenario), which are mutually interrelated, to give a holistic view of the whole process, beyond the sensor aspect alone. The reader can gain a more complete picture of this context without disregarding any of these 3 aspects.
最近,人们对在实验室外环境中持续监测心脏功能以实现心血管疾病的早期诊断越来越感兴趣,这促使人们研究心脏监测的创新方法。其中,通过穿戴式设备记录由心脏机械活动引起的胸部地震波的方法越来越受到关注。就基于可穿戴设备的方法而言,可以通过加速度计、陀螺仪和光纤传感器分别以加速度、角速度和/或位移的形式从胸部记录心脏振动。本文综述了目前用于测量心前区振动的可穿戴设备。重点介绍了用于提取感兴趣参数的传感器技术和信号处理技术。最后,讨论了每种技术的探索应用场景和实验方案及其相关影响因素。目标是深入研究这三个相互关联的基本方面(即可穿戴系统、信号处理和应用场景),而不仅仅是传感器方面,以全面了解整个过程。读者可以在不忽视这三个方面的任何一个的情况下,对这一背景有更全面的了解。