Conductive microfibres turn objects into healthcare monitors #electrocardiogram #research #robotic @EngineeringCambridge
Conductive microfibres turn objects into healthcare monitors #electrocardiogram #research #robotic  @EngineeringCambridge
Uploaded October 2025 | Updated September 2026, 1 hour ago
Ultra-thin conductive microfibres thinner than a human hair can turn objects into healthcare monitors and energy devices: eng.cam.ac.uk/news/smart-microfibres-turn-everyday-objects-healthcare-monitors-and-energy-devices

New #research led by ‪@cambridgeuniversity‬, in collaboration with Hong Kong University of Science and Technology (GZ) and Queen Mary University of London, could redefine how we interact with everyday tools and devices – thanks to a novel method for printing the microfibres.

The researchers present a one-step adaptive fibre deposition process using 3D printing, set up to satisfy the fast-changing demands of users. The process enables the on-demand deployment of conductive material layers on different surface areas, dependent on the model’s geometry, at the point of use.

These transparent layers can detect real-time #electrocardiogram (ECG) and surface electromyography (sEMG) signals. The researchers demonstrate this function using a #robotic hand, a pencil and a plier tool.

Read the article: eng.cam.ac.uk/news/smart-microfibres-turn-everyday-objects-healthcare-monitors-and-energy-devices

View the open access research paper: doi.org/10.1007/s42765-025-00561-6

Reference:
Ka, S.G.S., Wang, W., Giddens, H. et al. ‘Adaptive Printing of Conductive Microfibers for Seamless Functional Enhancement Across Diverse Surfaces and Shapes’. Advanced Fiber Materials (2025). DOI: 10.1007/s42765-025-00561-6

CREDITS

Footage and images: Stanley Ka
Music: bensound.com/free-music-for-videos
License code: 0GJM7VQL7SAWNKN5
Artist: Benjamin Tissot
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Department of Engineering, University of Cambridge |

Conductive microfibres turn objects into healthcare monitors #electrocardiogram #research #robotic

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