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environment. His/her mission will be to contribute data and analyses of the neural underpinnings of the learning tasks studied by means of invasive approaches that can range from neuropharmacology and the use
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to anatomical complexity and physiological functions associated with the organs at risk (OAR). At the same time, proton therapy has the potential to further reduce the toxicity of the treatment, but is much less
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of decommissioning • Taking charge of the experimental set-up for the development of separation methods and quantification of DTM radionuclides in the selected metals • Use of Monte-Carlo simulation codes (Geant4
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to their expertise. The project is based on the use of electromagnetic fields that induce the migration of electric charges near the cell membrane, thus modifying the existing physiological transmembrane potential and