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interaction, eye-tracking, optoelectronic and photonic solutions used in vision systems and displays (e.g., head-mounted displays with advanced optics, THz imaging systems) will be considered an asset. Specific
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-supervised and unsupervised learning for vision, vision-based robotics and autonomous systems, and generative models for image synthesis and enhancement. We would also be interested in applicants who
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field and experience in Mobile Robotics, AI and Computer Vision, these should be clearly stated. 4. Proof of enrollment/signed commitment to enroll in PhD or Non-degree course in Portugal upon start of
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, for the development of embedded algorithms and control systems, paradigms of shared-control and sensory feedback for wearable robots like limb prostheses or wearable devices for assistance and (neuro)rehabilitation
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, windows, furniture, I.V. poles, baseboards, operating room equipment (ultrasound machines, robotic equipment, Anesthesia NK monitor blue bell cart etc... .). Removes soiled linens/protective coverings
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in the domain of language development and language processing. The equipment includes Tobii eye-tracking systems and EyeLink 1000; EEG and fNIRS; FURHAT Robot and allows for studying language behaviour
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· Assistive technologies for individuals with visual impairments · AI-driven physical therapy and rehabilitation systems · Human-robot interaction and coordination Responsibilities: Perform
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strengths in developing the fundamentals of AI and also in applying AI in Financial Technology and other areas such as Digital Health, and Robotics and Autonomous Systems. Our new Temple Quarter Innovation
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on applying computer vision, machine learning, and sensor fusion to automatically detect, classify, and localize defects, improving the scalability and reliability of building inspection. Research on 3D
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interdisciplinary programmes in key strategic areas including precision oncology, advanced materials, regional oceanography, artificial intelligence and robotics, data science, cognitive and brain science and