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, (3) the development of translational strategies in circuit neuroscience and (4) the development of computational models and methods for neuroscience. The goal is to implement AI-based methods and
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. The multi-omics spatial and single-cell modalities from perturbed and regenerating livers form the ideal data stack to pioneer such methods. Predictions coming from these methods will be directly validated
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detailed and scientifically sound manner. Being a team player with attention to detail is therefore a must. The ideal candidate has experience, or at least a strong interest, in learning the newest methods
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method, can engineer thousands of defined mutations in parallel in a single test tube in yeast. Strains are tagged by DNA barcodes, allowing to efficiently track mutations in cell populations during
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method, can engineer thousands of defined mutations in parallel in a single test tube in yeast. Strains are tagged by DNA barcodes, allowing to efficiently track mutations in cell populations during
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-Molecule Drug Discovery Strong foundation in computational methods (e.g. docking, molecular dynamics, QSAR, machine learning) Experience working across diverse target classes Demonstrated impact on
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. The Farrow Lab specializes in visual behavior, with advanced methods for studying innate responses. The Vanderhaeghen Lab, led by Dr. Pierre Vanderhaeghen (Professor at KU Leuven; Principal Investigator at VIB
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adults, significantly impacting quality of life, and remain challenging to treat. Our research group has pioneered innovative methods to study voiding behavior in mice and developed live imaging techniques
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is a plus Strong analytical skills Self-motivated and upbeat team player Entrepreneurial and hands-on mentality Enthusiasm and energy (the “fun” factor ) Resilient and capable to adapt to changing
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, you will engineer synthetic promoters controlling context-specific gene expression in Arabidopsis. You will develop high-throughput (molecular) phenotyping methods to screen transcriptional activity