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. Ultimately, the goal is to move towards an active-learning-based screening to unravel particular developmental and disease states in its entirety. The automated analysis of this data will be a key building
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) and pushing the boundaries of innovation in all of VIB’s research domains (plant biology, cancer biology, structural biology, medical biotechnology, neuroscience, immunology and microbiology). Partner
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motion) Pose tracking and behavior segmentation with tools like DeepLabCut, MoSeq, and Kinect-based systems Longitudinal analysis of behavior from early postnatal to adolescent stages in
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, first on whether these indeed drive these aberrant states, and second on whether these indeed drive the growth pattern. You will be embedded both within an experimental and computational team, providing a
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advanced techniques such as ex vivo calcium imaging and transcriptomics of mouse and human urothelium and DRG neurons, and X-ray videocystometry in awake mice. The candidate will design and conduct
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, the applicant will benefit from established collaborations and access to centralized facilities with expertise in genomics, functional genomics and cell biology, proteomics, cutting-edge microscopy, structural
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commitment are essential. Access to state-of-the art tools and infrastructure within an excellence-based research institute. A stimulating and supportive international research environment. Various training
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translational cancer research. Omics based strategies, such as (epi-)genomics and transcriptomics, are opening unprecedented potential for developing novel precision oncology tools for improved diagnosis
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stimulating and international research environment A strong and dynamic network of international collaborators Primarily based at the VIB-UAntwerp with collaborative visits to the IN Joint supervision by
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collaboration with the candidate, a detailed research plan will be drafted aiming to unravel mutational robustness and evolvability in Escherichia coli. The work will involve genome editing (CRISPR), genetics