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BIOENGINEER.ORG - Bioengineering

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  • Aug 14, 2026earliest in window
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BIOENGINEER.ORG
bioengineer.org > feature-weighted-pcnn-classifies-big-medical-data-efficiently-using-mapreduce

Feature-weighted PCNN classifies big medical data efficiently using

3+ day, 10+ hour ago   (50+ words) MapReduce Bioengineer.org Subject of Research: Big data classification of medical data using a hybrid fractional hunter osprey optimization-based parallel convolutional neural network within the MapReduce framework Article Title: FHOO: feature weighting and PCNN for big data classification using MapReduce…...

BIOENGINEER.ORG
bioengineer.org > anti-swelling-biphasic-conductive-hydrogels-enable-3d-printed-implantable-bioelectronics

Anti-swelling biphasic conductive hydrogels enable 3D-printed implantable

1+ week, 2+ day ago   (608+ words) Hydrogels have long been considered one of the most promising material platforms for implantable bioelectronics. Soft, water-rich, and chemically similar to living tissue, they promise a gentle interface between electronics and biology. Yet despite decades of enthusiasm, hydrogel-based implants have…...

BIOENGINEER.ORG
bioengineer.org > stretchable-in-vivo-biosignal-amplifiers-use-strain-insensitive-materials-and-circuitry

Stretchable In Vivo Biosignal Amplifiers Use Strain-Insensitive Materials

2+ week, 1+ day ago   (677+ words) A new class of soft electronic amplifiers could help implantable biosensors record the body’s faint electrical signals more accurately, even as living tissue stretches, bends and moves. The devices, described by W. Sun, X. Pan, W. Yuan and colleagues, combine…...

BIOENGINEER.ORG
bioengineer.org > new-review-examines-noninvasive-3d-reconstruction-methods-for-transparent-objects

New Review Examines Noninvasive 3D Reconstruction Methods for Transparent

2+ week, 4+ day ago   (1030+ words) Objects Bioengineer.org...

BIOENGINEER.ORG
bioengineer.org > 3d-printed-cellulose-hydrogel-keeps-wearable-sensors-flexible-below-freezing

3D-Printed Cellulose Hydrogel Keeps Wearable Sensors Flexible Below

3+ week, 5+ day ago   (544+ words) Flexible wearable electronics may soon become far less vulnerable to winter conditions, thanks to a cellulose-based hydrogel that continues to conduct ionic signals even after prolonged exposure to subzero temperatures....