College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha 5825, Qatar.
Sensors (Basel). 2019 Mar 11;19(5):1230. doi: 10.3390/s19051230.
Wearable biosensors attract significant interest for their capabilities in real-time monitoring of wearers' health status, as well as the surrounding environment. Sensor patches are embedded onto the human epidermis accompanied by data readout and signal conditioning circuits with wireless communication modules for transmitting data to the computing devices. Wearable sensors designed for recognition of various biomarkers in human epidermis fluids, such as glucose, lactate, pH, cholesterol, etc., as well as physiological indicators, i.e., pulse rate, temperature, breath rate, respiration, alcohol, activity monitoring, etc., have potential applications both in medical diagnostics and fitness monitoring. The rapid developments in solution-based nanomaterials offered a promising perspective to the field of wearable sensors by enabling their cost-efficient manufacturing through printing on a wide range of flexible polymeric substrates. This review highlights the latest key developments made in the field of wearable sensors involving advanced nanomaterials, manufacturing processes, substrates, sensor type, sensing mechanism, and readout circuits, and ends with challenges in the future scope of the field. Sensors are categorized as biological and fluidic, mounted directly on the human body, or physiological, integrated onto wearable substrates/gadgets separately for monitoring of human-body-related analytes, as well as external stimuli. Special focus is given to printable materials and sensors, which are key enablers for wearable electronics.
可穿戴生物传感器因其实时监测佩戴者健康状况和周围环境的能力而引起了极大的关注。传感器贴片被嵌入到人体表皮上,同时带有数据读取和信号调节电路,以及无线通信模块,用于将数据传输到计算设备。设计用于识别人体表皮液中各种生物标志物(如葡萄糖、乳酸、pH 值、胆固醇等)以及生理指标(如脉搏率、温度、呼吸率、呼吸、酒精、活动监测等)的可穿戴传感器,在医疗诊断和健身监测方面都具有潜在的应用。基于溶液的纳米材料的快速发展为可穿戴传感器领域提供了有前景的视角,通过在广泛的柔性聚合物衬底上进行打印,实现了其具有成本效益的制造。本文重点介绍了涉及先进纳米材料、制造工艺、衬底、传感器类型、传感机制和读出电路的可穿戴传感器领域的最新关键进展,并以该领域未来的挑战作为结束。传感器可分为生物和流体型,直接安装在人体上,或生理型,分别集成在可穿戴衬底/小工具上,用于监测与人体相关的分析物以及外部刺激。特别关注的是可打印材料和传感器,它们是可穿戴电子产品的关键推动者。