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February 17, 2026Advanced ScienceOpen Access

Bioinspired Cold‐Laminated Ultrathin Hydrogels as a Broadly Adaptive Platform for Physiological Monitoring

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Authors

HCHui ChenJZJian ZhouJXJianfei Xie

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Overview

Novel hydrogel system improves physiological monitoring, suggesting advancements for bioelectronic devices.

Key Points

  • The main goal is to develop a versatile hydrogel platform for effective physiological monitoring in various applications.
  • Utilized a cold-lamination technique to integrate a TPU nanomesh within a temperature-responsive hydrogel.
  • Controlled device thickness and mechanical properties for optimized performance.
  • Evaluated adhesive properties and functionality in physiological monitoring.
  • Integrated the system with a deep learning network for diagnostic accuracy.
  • Achieved a tensile stress of 835.23 kPa with a 17 µm thick hydrogel film.
  • Demonstrated 99% classification accuracy for arrhythmias using the integrated intelligent platform.
  • Enabled reliable electrocardiogram monitoring under various conditions, including clinical settings.

Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/699405494e9c9e835dfd60c5https://doi.org/10.1002/advs.202524317
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