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domains where data cannot be directly shared, such as healthcare and finance, the ability to selectively remove the influence of specific data from trained models becomes critical. Yet, despite the EU’s
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instability remains poorly understood. This project will use advanced human cell models, molecular and imaging approaches to investigate how extracellular vesicles and other signalling mechanisms drive
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of promoting optic nerve repair, rebuilding eye-to-brain connections, and ultimately contributing to vision restoration. Using state-of-the-art experimental techniques and clinically relevant disease models, you
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therapeutic targets and strategies to improve clinical outcomes. The successful candidate will develop skills in 3D cell culture models, multi-omics and more. We are seeking a highly motivated candidate with a
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neutron stars. However, reliable predictions in regions where experimental data are scarce remain limited by uncertainties in model parameters, functional form, and the extrapolation of calibrated
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approach and animal models. The successful applicant will be highly self-motivated, possessing the organizational skills, resilience and drive necessary to manage an independent research project and produce