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, the study of neuroimaging phenotypes and their associated genetic and environmental factors has become a central component of ongoing research, with a strong potential for improving our understanding
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observed in Drosophila larvae. This interdisciplinary project combines biology, neuroscience, and computational modelling to understand how the larva’s body’s physical properties influence its motor control
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benjamin.devauchelle@pasteur.fr in Cc. The candidate should have a PhD in Human Genetics and the following skills: Strong interest in the field of genetics, neurobiology and psychiatry. Computer skills: strong level in
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, including Titan Krios and Glacios microscopes, a fully equipped crystallography platform, advanced computing clusters, proteomics and BSL-2/3 imaging facilities. The institute provides numerous training
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, a computational approach with the generation of realistic models of the auditory system allows us to make theoretical predictions and verify our experimental results. The engineer will be responsible
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The specific objectives of the M2 are: 1°) To identify which DC subsets express vaccinal mRNA. To this end, we will use a cre recombinase-expressing mRNA vaccine enabling the genetic labelling of mRNA expressing
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together world-class researchers from various fields, including neurophysiology, computational neuroscience, auditory cognition, genetics and genomics, cell biology and gene therapy. It is located in
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The Mouse Genetics Laboratory is recruiting a post-doctoral fellow to study the role of host genetic determinants in the transmission of Zika virus between mice and mosquitoes in a collaborative
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Introduction Drosophila larvae have become an excellent model for concurrently investigating behavior and the underlying neuronal processes. Advanced genetic tools enable the efficient activation
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in DC-deficient genetically engineered mice (Xcr1DTA , pDCDTA , pDC-likeDTR ). 2°) To determine the developmental potential of ICI-induced hematopoietic progenitors in the bone marrow and better