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century. Join the Centre de Résonance Magnétique des Systèmes Biologiques (CRMSB ) – of the University of Bordeaux! This mixed research unit develops research themes in the field of MRI methodology and
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-based reconstruction algorithms and image analysis pipelines. These approaches will provide highly efficient high-dimensional MRI image acquisition and reconstruction. We seek an enthusiastic and
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capture. About the research project The project will apply MRI to elucidate on the swelling of superabsorbent polymer in complex fluids with different physiochemical properties and under pressure. The aim
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capture. About the research project The project will apply MRI to elucidate on the swelling of superabsorbent polymer in complex fluids with different physiochemical properties and under pressure. The aim
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focusing on encapsulated cell-based therapies for the treatment of diabetes. This post-doc will lead the development of magnetic resonance spectroscopy (MRS) and imaging (MRI) methodologies and conduct non
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underlying mental processing speed. The successful applicant will drive a fascinating project that links processing speed measures to previously acquired functional and structural MRI data. The project will
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project that links processing speed measures to previously acquired functional and structural MRI data. The project will also involve simultaneously acquired and co-registered fMRI and EEG measurements
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 days ago
or related Engineering or Physics. Required Qualifications, Competencies, and Experience PhD degree in Biomedical/Electrical or related Engineering or Physics. Experience with MRI acquisition and data analysis
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Send your CV along with a motivation letter to chloe.lehoucq@pasteur.fr with benjamin.devauchelle@pasteur.fr in Cc. The candidate should have a PhD in Neuroscience or Cognitive science and the
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to funcional changes in mice, such as behavioural modulation and brain network activity by MRI. The candidate will use state-of-the-art optical tools: in vitro calcium imaging, in vivo fiber photometry