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The amalgamation of wearable technologies with physiochemical sensing capabilities promises to create powerful interpretive and predictive platforms for real-time health surveillance. However, the construction of such multimodal devices is difficult to be implemented wholly by traditional manufacturing techniques for at-home personalized applications. Here, we present a universal semisolid extrusion–based three-dimensional printing technology to fabricate an epifluidic elastic electronic skin (e3-skin) with high-performance multimodal physiochemical sensing capabilities. We demonstrate that the e3-skin can serve as a sustainable surveillance platform to capture the real-time physiological state of individuals during regular daily activities. We also show that by coupling the information collected from the e3-skin with machine learning, we were able to predict an individual’s degree of behavior impairments (i.e., reaction time and inhibitory control) after alcohol consumption. The e3-skin paves the path for future autonomous manufacturing of customizable wearable systems that will enable widespread utility for regular health monitoring and clinical applications.more » « less
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Shirzaei Sani, Ehsan; Xu, Changhao; Wang, Canran; Song, Yu; Min, Jihong; Tu, Jiaobing; Solomon, Samuel A.; Li, Jiahong; Banks, Jaminelli L.; Armstrong, David G.; et al (, Science Advances)A soft smart bandage is capable of multiplexed metabolic monitoring, antimicrobial treatment, and electrical stimulation.more » « less
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Min, Jihong; Demchyshyn, Stepan; Sempionatto, Juliane R.; Song, Yu; Hailegnaw, Bekele; Xu, Changhao; Yang, Yiran; Solomon, Samuel; Putz, Christoph; Lehner, Lukas E.; et al (, Nature Electronics)
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