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of the team Extensive and excellent training for cryo-EM Dedicated new cell culture facility for adherent or suspension culture of mammalian cells State of the art systems for purification and analysis
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where appropriate; Harmonize policies, processes, and tools where this adds value, efficiency, and consistency; reduce duplication of systems and workflows; Strengthen operational
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state-of-the-art approaches including single-cell and spatial transcriptomics, circuit tracing and connectomics, and automated behavioral analysis. In close collaboration with the Verstreken and de Wit
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morphology to directly link gene-regulatory cell states to functional neuronal phenotypes. This ambitious project integrates wet-lab experimentation with advanced computational analysis, and is ideal for a
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-edge technologies for next generation sequencing. Our user base consists of both VIB and non-VIB scientists throughout Europe. Key applications are gene expression analysis, whole genome sequencing
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colleagues on multi‑omics data integration and analysis. You will also work with AI experts to help implement predictive models that improve guide design and functional genomics workflows. You will join an
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analysis across experimental models and patient-derived specimens Extension of these observations to clinical samples from patients with systemic amyloidosis, including ATTR and AL amyloidosis
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and propose meaningful and testable hypotheses, grounded in disease biology. Perform end‑to‑end processing, quality control, integration, and analysis of single‑cell and multimodal omics datasets (e.g
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processing, quality control, integration, and analysis of single‑cell and multimodal omics datasets (e.g. scRNA‑seq, scATAC‑seq). Train, evaluate, and benchmark deep learning models operating on single‑cell
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cytometry, including the design, optimization, and analysis of complex high-parameter panels. You will take a leading role in driving multiple projects and serve as a core resource for the team by supporting