School of Engineering, Macquarie University, Sydney, NSW 2109, Australia.
School of Computer and Information Sciences, University of Hyderabad, Hyderabad 500046, India.
Sensors (Basel). 2022 Jul 8;22(14):5137. doi: 10.3390/s22145137.
This paper presents a substantial review of the deployment of wearable sensors for healthcare applications. Wearable sensors hold a pivotal position in the microelectronics industry due to their role in monitoring physiological movements and signals. Sensors designed and developed using a wide range of fabrication techniques have been integrated with communication modules for transceiving signals. This paper highlights the entire chronology of wearable sensors in the biomedical sector, starting from their fabrication in a controlled environment to their integration with signal-conditioning circuits for application purposes. It also highlights sensing products that are currently available on the market for a comparative study of their performances. The conjugation of the sensing prototypes with the Internet of Things (IoT) for forming fully functioning sensorized systems is also shown here. Finally, some of the challenges existing within the current wearable systems are shown, along with possible remedies.
本文对可穿戴传感器在医疗保健应用中的部署进行了全面回顾。可穿戴传感器在微电子行业中具有重要地位,因为它们可用于监测生理运动和信号。使用各种制造技术设计和开发的传感器已与通信模块集成,用于收发信号。本文重点介绍了生物医学领域中可穿戴传感器的整个发展历程,从在受控环境中的制造到为应用目的与信号调理电路的集成。本文还突出了当前市场上可用的传感产品,以便对其性能进行比较研究。本文还展示了将传感原型与物联网 (IoT) 结合起来,形成功能齐全的传感器系统。最后,本文展示了当前可穿戴系统中存在的一些挑战以及可能的解决方案。