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This research aims to improve assistive robotics for dyspraxia, focusing on real-time adaptation to individual needs through advanced mathematical modeling.
Researchers developed the ADAPT Hand, achieving 93% success in grasping tasks by mimicking human-like compliance and ...
This study on link-bots reveals how modular, self-propelled chains achieve coordinated movement and object manipulation ...
The AI model developed for atopic dermatitis assessment uses smartphone photos, bridging the gap between patient-reported ...
A study reveals machine learning models can predict dementia in Parkinson's patients, emphasizing the role of genetics and ...
Pioneering technological solutions to some of the biggest challenges facing the water sector have won a share of £42 million ...
Discover how to design, implement, and maintain AI labs. This guide covers readiness assessments, infrastructure, ...
University of Bristol's soft robot mimics octopus suction intelligence, allowing for delicate handling and environmental ...
This study presents a UV-guided cyborg insect, demonstrating effective navigation by leveraging natural sensory responses ...
An edible, biodegradable aquatic robot designed for monitoring and nutrient delivery, utilizing Marangoni propulsion and ...
WildFusion combines multiple senses in robots, improving navigation in challenging terrains like forests and disaster zones with advanced sensory integration.
This study introduces a proprioceptive framework for robots to identify object properties through motion analysis, improving ...