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, and bioinformatics to make informed decisions on data analysis and validation experiments. Dr Francavilla’s team is funded by the Novo Nordisk Foundation and LEO Foundation and focuses on regulatory
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following articles published over the past four years for additional information: Cell 187:205 (2024); Nature 624:154 (2023); Nature 620:200 (2023); Nature 623:1034 (2023); Nature Reviews Immunology
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at DTU here . Further information Further information may be obtained from Professor Peter Bøggild, DTU Physics (pbog@dtu.dk) or Assistant Professor Bjarke Sørensen Jessen (bsoje@dtu.dk). You can read more
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been linked to these diseases for decades. This project aims to establish human autoantibody clones from various autoimmune diseases, with a primary focus on Systemic Sclerosis. This is with the purpose
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with expertise in the acquisition and analysis of human MEG +/- OPM-MEG data to study brain function and cognition in children and young people as part of a Wellcome-funded project. The post-holder will
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diverse academic backgrounds to contribute to our projects in areas such as: Network Security, Information Assurance, Model-driven Security, Cloud Computing, Cryptography, Satellite Systems, Vehicular
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and phosphoproteomics with computational approaches, we will build a comprehensive molecular framework that links specific inflammatory pathways to clinical phenotypes. Our goal is to provide
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the next generation of researchers in molecular medicine by implementing joint postdoctoral research projects to nurture strong competences and research excellence. More information about the Nordic EMBL
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electrophysiology to translational models, including animal studies and analyses of human tissue samples. This full-stack methodology enables us to directly link molecular channel function with disease phenotypes
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functional screens and read out mutation identities via barcode sequencing. By providing a direct link between sequence and function MAGESTIC enables massively scaled screens of precise mutations, with