State Key Laboratory for Superlattices and Microstructures, Institution of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.
Center of Materials Science and Optoelectronic Engineering, University of Chinese Academy of Sciences, Beijing, 100029, China.
Adv Sci (Weinh). 2022 Jan;9(1):e2103257. doi: 10.1002/advs.202103257. Epub 2021 Oct 28.
Wearable sweat sensors have received significant research interest and have become popular as sweat contains considerable health information about physiological and psychological states. However, measured biomarker concentrations vary with sweat rates, which has a significant effect on the accuracy and reliability of sweat biosensors. Wearable sweat loss measuring devices (SLMDs) have recently been proposed to overcome the limitations of biomarker tracking and reduce inter- and intraindividual variability. In addition, they offer substantial potential for monitoring human body homeostasis, because sweat loss plays an indispensable role in thermoregulation and skin hydration. Previous studies have not carried out a comprehensive and systematic review of the principles, importance, and development of wearable SLMDs. This paper reviews wearable SLMDs with a new health perspective from the role of sweat loss to advanced mechanisms and designs. Two types of sweat and their measurement significance for practical applications are highlighted. Then, a comprehensive review of advances in different wearable SLMDs based on hygrometers, absorbent materials, and microfluidics is presented by describing their respective device architectures, present situations, and future directions. Finally, concluding remarks on opportunities for future application fields and challenges for future sweat sensing are presented.
可穿戴汗液传感器受到了广泛关注,因为汗液中包含有关生理和心理状态的大量健康信息。然而,测量到的生物标志物浓度随汗液率而变化,这对汗液生物传感器的准确性和可靠性有重大影响。最近提出了可穿戴汗液损失测量装置 (SLMD) 来克服生物标志物跟踪的局限性并减少个体内和个体间的变异性。此外,它们在监测人体动态平衡方面具有很大的潜力,因为汗液损失在体温调节和皮肤水合作用中起着不可或缺的作用。以前的研究没有对可穿戴 SLMD 的原理、重要性和发展进行全面系统的综述。本文从汗液损失的作用到先进的机制和设计,从新的健康角度综述了可穿戴 SLMD。强调了两种汗液及其对实际应用的测量意义。然后,通过描述各自的器件结构、现状和未来方向,对基于湿度计、吸水性材料和微流控技术的不同可穿戴 SLMD 的进展进行了全面综述。最后,提出了未来汗液传感应用领域的机遇和挑战的结论性意见。