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Field
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remains a major scientific challenge. These challenges are particularly evident in robot-assisted retinal surgery, where surgical instruments must navigate through a sub-millimetre entry port and interact
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and objectives Vision-language-action models (VLAs) Investigate VLA models and multimodal representations that connect visual observations and language instructions to robot behaviour, including
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Artificial intelligence is creating new opportunities to make games more accessible and inclusive for everyone. This PhD project will explore how AI can support players with visual impairments by
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expertise in artificial intelligence, computer vision, human-computer interaction, and psychology. Its technical core lies in developing robust and adaptive visual speech recognition models. Close
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interact over long evolutionary timescales, and how more recent evolutionary forces shape exonic enhancers. The work will involve the development of reproducible bioinformatics workflows, statistical
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authenticity of visual media and provide understandable evidence for model decisions. The candidate will investigate how general-purpose pretrained visual and multimodal representations can be adapted
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and visual monitoring during deployment, working in coordination with the RT3D development led by E-Sailor 15. The research includes conducting laboratory and in-orbit experiments using data from
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interaction with WFBR domain specialists, with whom you will play a key role in translating state‑of‑the‑art digital techniques into models that meet their scientific and operational needs. You will work here
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gaps exist regarding the multiscale behaviour of these treatments, from microscale pore interactions to macroscale building performance. This project will advance beyond the state of the art by
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interactions that dominate the parallel scalability of similar simulations, with a view towards informing future technology choices in the HPC sector. Duties of the position Complete the doctoral education until