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of a doctorate, contains: Are you eager to improve pandemic preparedness through data-driven research? Do you want to work on real-world implementation of AI and epidemiological models in healthcare
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(Artificial Intelligence and Epidemic Modeling to Prepare Hospitals for the Next Respiratory Pathogen with Pandemic Potential). Project Overview The COVID-19 pandemic exposed critical gaps in our ability
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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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, bioengineering, (molecular) biology, or related fields, with the equivalent of at least distinction (15/20). You are eager to work hands-on with innovative experimental setups and animal models You can take
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of small model organisms (in case we need to validate experiments in a mouse model). Strong interest in basic and applied research, stem cell culturing, microscopy, electrophysiology, molecular mechanisms
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of small model organisms (in case we need to validate experiments in a mouse model). Strong interest in basic and applied research, stem cell culturing, microscopy, electrophysiology, molecular mechanisms
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Department: Center for Molecular Neurology Regime Full-time Let’s shape the future – University of Antwerp The Gut-Immune-Brain Axis Lab (Prof. Seppe De Schepper, VIB-UAntwerp) and the Brain and
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drive neuroinflammation in synucleinopathies and other neurodegenerative diseases. The candidate will employ advanced in vivo models and spatial technologies to dissect the roles of tissue-resident
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include 1) a murine (diet-induced obesity) model, 2) acute and chronic exercise paradigms, 3) treatment with peripherally restricted enzyme-based eCB modulators, 4) multi-tissue molecular analyses and 5
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understanding on the origin of nucleic acids that are shed in liquid biopsies, such as blood, using cancer models (mouse and rat) and patient samples of neuroblastoma disease, a rare childhood cancer. Nucleic