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elucidating the molecular and cellular mechanisms of the late phase of long-term potentiation (LTP), a key process in learning and memory. The project is based on the development and use of an innovative
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to profound physiological changes. Despite several decades of study, the molecular signalling between the two partners and, the symbiosis competence properties of the animal cell remain unclear due to the lack
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the effects of microplastics (MPs) on early development and thyroid physiology in a model aquatic vertebrate, the amphibian Xenopus laevis. The main missions will be: To conduct and analyze exposure experiments
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"Physiology of Neural Networks" team and will be in charge of a research project aimed at understanding the mechanisms of integration of cerebellar information in pyramidal cells and interneurons of the motor