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Saelens team. Research Project In this research project you will develop probabilistic deep-learning models that automatically extract biological and statistical knowledge from in vivo perturbational omics
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scientific problems and a curiosity-driven approach in their work. We offer Excellent opportunity for a challenging membrane protein structure project with translational aspects embedded in the core expertise
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and Saeys teams. In this research project you will develop and apply algorithms to link clinical phenotypes of metastasis to molecular phenotypes in mouse models. It is known that metastases exhibit
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. Our mission is to move beyond descriptive biology and develop predictive, mechanistic models that connect molecular regulation to cellular and systems-level phenotypes. The Laboratory of Computational
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mouse models with genetically engineered timing of synaptic development This work will contribute critical insight into how early brain development influences behavioral outcomes in ASD, and how
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early developmental success. You will establish an integrated workflow that combines cryo-electron tomography (cryo-ET), sub-tomogram averaging and expansion microscopy to map/model key sperm structures
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(www.uhasselt.be/en/who-is-who/sophie-hendrix ) and A. Cuypers (www.uhasselt.be/en/who-is-who/ann-cuypers ) have expertise in molecular plant physiology, redox biology, and biosensor technology. At VIB-UGent, I. De
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neuroinflammation. The PhD student will focus on characterizing immune cell responses in food allergy models and their impact on brain immunity. In close collaboration with experts in food allergy, neuroimmunology