PhysioSkin: Rapid Fabrication of Skin-Conformal Physiological Interfaces
Aditya Shekhar Nittala, Arshad Khan, Klaus Kruttwig, Tobias Kraus, Jürgen Steimle
Abstract
Advances in rapid prototyping platforms have made physiological sensing accessible to a wide audience. However, off-the-shelf electrodes commonly used for capturing biosignals are typically thick, non-conformal and do not support customization. We present PhysioSkin, a rapid, do-it-yourself prototyping method for fabricating custom multi-modal physiological sensors, using commercial materials and a commodity desktop inkjet printer. It realizes ultrathin skin-conformal patches ( 1μm) and interactive textiles that capture sEMG, EDA and ECG signals. It further supports fabricating devices with custom levels of thickness and stretchability. We present detailed fabrication explorations on multiple substrate materials, functional inks and skin adhesive materials. Informed from the literature, we also provide design recommendations for each of the modalities. Evaluation results show that the sensor patches achieve a high signal-to-noise ratio. Example applications demonstrate the functionality and versatility of our approach for prototyping a next generation of physiological devices that intimately couple with the human body.
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Install the CLIlune papers fulltext 2fd2bce8-c058-4ddb-9411-a702b3468e50Cited by top-tier papers13
- Prototyping Soft Devices with Interactive BioplasticsMarion Koelle, Madalina Nicolae, Aditya Shekhar Nittala, Marc Teyssier et al.UIST 2022 · 73 citations
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- Next Steps in Epidermal Computing: Opportunities and Challenges for Soft On-Skin DevicesAditya Shekhar Nittala, Jürgen SteimleCHI 2022 · 32 citations
- Conformal, Seamless, Sustainable: Multimorphic Textile-forms as a Material-Driven Design Approach for HCIHolly McQuillan, Elvin KaranaCHI 2023 · 32 citations
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