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of sensing, actuation, and manipulation at sub-millimetre scales. Micro-robotic systems enable highly miniaturized devices that can operate in confined anatomical environments and interact with biological
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Key takeaways Minimally invasive interventions increasingly require tools capable of sensing, actuation, and manipulation at sub-millimetre scales. Micro-robotic systems enable highly miniaturized
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multidisciplinary project at the intersection of Robotics and wildlife conservation. The project aims to develop autonomous drones capable of perching on natural structures, inspired by the way birds rest on branches
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Group in the Cognitive Robotics department of TU Delft. The group frequently publishes in top conferences and journals such as CVPR, ECCV, ICRA, IROS, T-IV, T-ITS, T-RO, T-PAMI. Your primary supervisor
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PRIME, the Soft Robotics Lab at the department of Biomedical Engineering at University of Twente, and with collaborators with experience in muscle histology, as well as with clinical and pharmaceutical