Scagliusi Santiago F, Giménez-Miranda Luis, Pérez-García Pablo, Olmo-Fernández Alberto, Huertas-Sánchez Gloria, Medrano-Ortega Francisco J, Yúfera-García Alberto
Institute of Microelectronics of Seville - Spanish National Center of Microelectronics (IMSE-CNM) University of Seville, 41092 Seville, Spain.
Institute of Biomedicine of Seville (IBiS-US), Hospital Universitario Virgen del Rocío (HUVR) University of Seville, 41013 Seville, Spain.
Rev Cardiovasc Med. 2024 Sep 9;25(9):320. doi: 10.31083/j.rcm2509320. eCollection 2024 Sep.
Heart-failure (HF) is a severe medical condition. Physicians need new tools to monitor the health status of their HF patients outside the hospital or medical supervision areas, to better know the evolution of their patients' main biomarker values, necessary to evaluate their health status. Bioimpedance (BI) represents a good technology for sensing physiological variables and processes on the human body. BI is a non-expensive and non-invasive technique for sensing a wide variety of physiological parameters, easy to be implemented on biomedical portable systems, also called "wearable devices". In this systematic review, we address the most important specifications of wearable devices based on BI used in HF real-time monitoring and how they must be designed and implemented from a practical and medical point of view. The following areas will be analyzed: the main applications of BI in heart failure, the sensing technique and impedance specifications to be met, the electrode selection, portability of wearable devices: size and weight (and comfort), the communication requests and the power consumption (autonomy). The different approaches followed by biomedical engineering and clinical teams at bibliography will be described and summarized in the paper, together with results derived from the projects and the main challenges found today.
心力衰竭(HF)是一种严重的病症。医生需要新的工具来监测其HF患者在院外或医疗监管区域之外的健康状况,以便更好地了解患者主要生物标志物值的变化情况,这对于评估患者的健康状况至关重要。生物阻抗(BI)是一种用于感知人体生理变量和过程的良好技术。BI是一种低成本且非侵入性的技术,可用于感知多种生理参数,易于在生物医学便携式系统(也称为“可穿戴设备”)上实现。在本系统综述中,我们阐述了基于BI的可穿戴设备在HF实时监测中的最重要规格,以及从实际和医学角度来看它们必须如何设计和实现。将分析以下几个方面:BI在心力衰竭中的主要应用、要满足的传感技术和阻抗规格、电极选择、可穿戴设备的便携性:尺寸和重量(以及舒适度)、通信要求和功耗(自主性)。本文将描述和总结生物医学工程和临床团队在参考文献中采用的不同方法,以及项目得出的结果和当今发现的主要挑战。