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machine-learning models to investigate how brain, environment and social factors influence cognition, ageing and neurodegenerative disease. The role will contribute primarily to WP6 and related analytical
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researchers in materials science and industry. More information can be found at http://ambercentre.ie About the Trinity Centre for Biomedical Engineering (TCBE): TCBE is a key research centre in Trinity College
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review where gaps are identified in knowledge or understanding of a topic To be successful in this role you will need: • Postgraduate qualification / research experience in relevant field, PhD
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to join the ‘Understanding Determinants of Future Vehicle Demand (UDev)’ project to investigate future car demand, focusing on electric vehicles, hybrid technologies, mobility behaviour, and the
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neuroimaging methods to better detect disrupted function following neonatal brain injury, and identify new more energy efficient learning algorithms that could reduce the economic and environmental cost of AI
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neuroimaging methods to better detect disrupted function following neonatal brain injury, and identify new more energy efficient learning algorithms that could reduce the economic and environmental cost of AI
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. The aim of this project is to test human urological tissues and based on this data to develop a bench-top system for testing urological devices which can aid in the optimisation of these devices. The work
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structured learning, mentorship, pilot project development, and engagement with clinical and community settings. Upon completing the program, fellows join a lifelong global network of Atlantic Fellows working
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structured learning, mentorship, pilot project development, and engagement with clinical and community settings. Upon completing the program, fellows join a lifelong global network of Atlantic Fellows working
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the global impact of dementia, with particular emphasis on underserved and marginalised communities. Fellows engage in an immersive academic and experiential curriculum combining structured learning