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基于光纤的可穿戴传感器在智能健康监测中的进展。

Advancements in optical fiber-based wearable sensors for smart health monitoring.

机构信息

Nanophotonics and Plasmonics Laboratory, School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Odisha, 752050, India.

Nanophotonics and Plasmonics Laboratory, School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Odisha, 752050, India.

出版信息

Biosens Bioelectron. 2024 Jun 15;254:116232. doi: 10.1016/j.bios.2024.116232. Epub 2024 Mar 18.

Abstract

Healthcare system is undergoing a significant transformation from a traditional hospital-centered to an individual-centered one, as a result of escalating chronic diseases, ageing populations, and ever-increasing healthcare costs,. Wearable sensors have become widely used in health monitoring systems since the COVID-19 pandemic. They enable continuous measurement of important health indicators like body temperature, wrist pulse, respiration rate, and non-invasive bio fluids like saliva and perspiration. Over the last few decades, the development has mostly concentrated on electrochemical and electrical wearable sensors. However, due to the drawbacks of such sensors, such as electronic waste, electromagnetic interference, non-electrical security, and poor performance, researchers are exhibiting a strong interest in optical principle-based systems. Fiber-based optical wearables are among the most promising healthcare systems because of advancements in high-sensitivity, durable, multiplexed sensing, and simple integration with flexible materials to improve wearability and simplicity. We present an overview of recent developments in optical fiber-based wearable sensors, focusing on two mechanisms: wavelength interrogation and intensity modulation for the detection of body temperature, pulse rate, respiration rate, body movements, and biomedical noninvasive fluids, with a thorough examination of their benefits and drawbacks. This review also focuses on improving working performance and application techniques for healthcare systems, including the integration of nanomaterials and the usage of the Internet of Things (IoT) with signal processing. Finally, the review concludes with a discussion of the future possibilities and problems for optical fiber-based wearables.

摘要

医疗保健系统正在经历从以传统医院为中心向以个体为中心的重大转型,这是由于慢性病的不断加剧、人口老龄化和不断增加的医疗保健成本所致。自 COVID-19 大流行以来,可穿戴传感器已在健康监测系统中得到广泛应用。它们能够连续测量体温、手腕脉搏、呼吸频率等重要健康指标,以及唾液和汗液等非侵入性生物液体。在过去几十年中,开发工作主要集中在电化学和电气可穿戴传感器上。然而,由于这些传感器存在电子废物、电磁干扰、非电气安全和性能不佳等缺点,研究人员对基于光学原理的系统表现出了强烈的兴趣。基于光纤的可穿戴设备是最有前途的医疗保健系统之一,因为其在高灵敏度、耐用性、多路复用传感以及与柔性材料的简单集成方面取得了进展,从而提高了可穿戴性和简易性。我们介绍了基于光纤的可穿戴传感器的最新发展,重点介绍了两种机制:波长询问和强度调制,用于检测体温、脉搏率、呼吸率、身体运动和生物医学非侵入性流体,并彻底研究了它们的优缺点。本综述还重点关注了改善医疗保健系统的工作性能和应用技术,包括纳米材料的集成以及物联网与信号处理的结合。最后,本文讨论了基于光纤的可穿戴设备的未来可能性和问题。

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