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Giorgio Divitini, who has extensive experience in Electron Microscopy technique development and applications. The research focuses on furthering and applying the state of the art in electron microscopy
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assays (e.g. Luminex), molecular biology assays (e.g. nanoString), protein assays (e.g. western blot), immunohistochemistry, flow cytometry, and microscopy. This position will be expected to follow
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intelligence extraction workflows. The Tilburg PhD researcher will develop a methodological pipeline for analysing high-resolution microscopy data of integrated circuits, integrating computer vision, deep
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electron microscopy (cryo-EM), light microscopy, sequencing, and proteomics. For more information, please visit https://www.helsinki.fi/hilife/bi Additional information For further inquiries regarding
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, threat analysis, and intelligence extraction workflows. The Tilburg PhD researcher will develop a methodological pipeline for analysing high-resolution microscopy data of integrated circuits, integrating
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for biomedical research Electronic Health Record (EHR) analytics and clinical data integration Biomedical image analysis and quantitative microscopy High-performance computing (HPC) and scalable AI pipelines
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, establishing phage-host systems, performing quantitative infection assays under defined physiological conditions, and using fluorescence or time-lapse microscopy to link pre-infection state to infection outcome
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microscopy, confocal microscopy) and/or spatial transcriptomics platforms (e.g., Xenium, Visium). Background in male reproductive biology, testicular development, or endocrinology. Experience with
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, physiology-aware models of bacteriophage infection by combining high-throughput single-cell microscopy, microfluidics, image analysis, and mathematical modelling. The work will contribute to understanding how
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. fluorescence microscopy, flow cytometry, image analysis or CRISPR/Cas9). Experience with mitochondrial biology, tumour–stromal interactions, extracellular vesicles, intercellular communication or therapy