Department of Information Engineering, University of Padova, I-35131 Padova, Italy.
Department of Electrical Engineering, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.
Sensors (Basel). 2022 May 26;22(11):4035. doi: 10.3390/s22114035.
This work presents an overview of the main strategies that have been proposed for non-invasive monitoring of heart rate (HR) in extramural and home settings. We discuss three categories of sensing according to what physiological effect is used to measure the pulsatile activity of the heart, and we focus on an illustrative sensing modality for each of them. Therefore, electrocardiography, photoplethysmography, and mechanocardiography are presented as illustrative modalities to sense electrical activity, mechanical activity, and the peripheral effect of heart activity. In this paper, we describe the physical principles underlying the three categories and the characteristics of the different types of sensors that belong to each class, and we touch upon the most used software strategies that are currently adopted to effectively and reliably extract HR. In addition, we investigate the strengths and weaknesses of each category linked to the different applications in order to provide the reader with guidelines for selecting the most suitable solution according to the requirements and constraints of the application.
本工作概述了在院外和家庭环境中用于非侵入式心率(HR)监测的主要策略。我们根据用于测量心脏搏动活动的生理效应讨论了三类传感,并为每一类聚焦一种说明性的传感模式。因此,心电图、光电容积脉搏波描记法和心机械图被呈现为用于感测电活动、机械活动和心脏活动的外周效应的说明性模式。在本文中,我们描述了这三类背后的物理原理以及属于每种类别的不同类型传感器的特性,并探讨了目前为了有效地和可靠地提取 HR 而采用的最常用的软件策略。此外,我们研究了与不同应用相关的每种类别的优缺点,以便为读者提供根据应用的要求和约束选择最合适的解决方案的指导。