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Wearable microfluidic biomarker sensor for human performance assessment

机译:可穿戴的微流体生物标志物传感器,用于人类性能评估

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Sweat carries valuable information about our physiological and cognitive status. Measurement of various biomarkers in sweat provides a pathway for the assessment of fatigue or cognitive ability, disease, or even physical conditions such as blood glucose or hydration levels for individuals [1]. There has been a significant interest in developing a non-invasive, wearable sensor platform to facilitate the detection of a range of biomarkers from sweat. This paper will describe approaches for development of a wearable microfluidic platform suitable for non-invasive detection of sweat-based biomarkers (for example glucose, Orexin A, cortisol and IL-6). The wearable platform is composed of miniaturized electrical sensors integrated with flexible, printed microfluidic components that allow for on-demand sample acquisition and transport of sweat, and subsequent detection of biomarkers at the sensing surface site. Sample acquisition is achieved utilizing absorbent pads affixed to the skin that feed hydrophylic microchannels with on-demand sample acquisition controlled through printed electro-wetting valves enabling capillary pumping to continuously deliver sample to the sensor.
机译:汗水带有有关我们的生理和认知状态的宝贵信息。汗液中各种生物标志物的测量为评估疲劳或认知能力,疾病,甚至物理条件(如血糖或个体水合水平)的评估提供了途径[1]。在开发非侵入性的可穿戴传感器平台方面存在重大兴趣,以便于从汗水中检测一系列生物标志物。本文将描述适用于非侵入性检测的可穿戴微流体平台的途径的途径(例如葡萄糖,orexina,皮质醇和IL-6)。可穿戴平台由集小型电动传感器组成,集成与柔性的印刷微流体组分,允许按需采样采集和运输汗液,随后检测感测表面位点处的生物标志物。利用粘合到皮肤的吸收垫实现样品采集,通过印刷的电润湿阀控制含有按需样品采集,使毛细管泵送将样品连续向传感器连续输送样品。

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