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wildlife migrations, altered vegetation, and disrupted San hunter-gatherer territories—that not only shaped and continue to shape Kalahari landscapes, but also the very conditions of anthropological
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contribution to proteinuria-induced kidney injury. Our research integrates molecular and cellular biology, mouse models, advanced imaging, and omics technologies to uncover mechanisms driving chronic kidney
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wildlife migrations, altered vegetation, and disrupted San hunter-gatherer territories—that not only shaped and continue to shape Kalahari landscapes, but also the very conditions of anthropological
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with sustainability assessment methods, including life cycle assessment and related modelling approaches, and you have applied these in cases and analysis related to biobased products and the bioeconomy
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microscopy and imaging approaches Hands-on experience with genome editing technologies (CRISPR-based techniques) Hands-on experience with cellular differentiation systems, stem cell biology and cellular models
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-4DµXRD results. Implementing crystal plasticity finite element models that use the experimental data as input and to understand the observed local strain heterogeneities You will work in close
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textiles. The projects are carried out in close collaboration with industrial and societal partners and aim to develop, test, and implement innovative circular concepts and business models that reduce
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the invasive comb jelly Mnemiopsis leidyi, one of the very few animals known to produce coelenterazine, as model organism in our laboratories at University of Copenhagen. Apart from studying bioluminescence in
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molecular and cell biology, transcriptomics, epigenomics and metabolomics, bioinformatics, immune fluorescence imaging, electrophysiology, and animal models of immunity in health and disease. The lab's
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founders develop social business models by working systematically with societal problems, solutions, impact logic, value propositions, funding models, stakeholder engagement, and implementation pathways