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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Stein bei N rnberg, Bayern | Germany | about 1 month ago
fields are AI-based organ mapping, tissue engineering and precision medicine in cancer treatments. Sophisticated technologies such as 3D tissue imaging or molecular profiling are combined with AI tools
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, visualization, rendering, modeling, interaction, simulation, game technology, and immersive environments, with strong connections to artificial intelligence, data science, AR/VR, 3D computer vision, and high
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model of the product and its constituent parts. developing and maintaining 3D models of parts, assemblies, and overall product layouts; creating and maintaining large assemblies; establishing the product
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to more than one; state your preference in your motivation letter. 1. Neurodevelopmental proteomics You will map the molecular circuitry of human neurodevelopment using advanced 2D and 3D cell models together
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of Utah. PCM supports investigators through expertise in patient-derived xenografts, cell-line xenografts, genetically engineered mouse models, patient-derived organoids, in vivo therapeutic studies
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Sheraton M, Assitant Professor, [email protected] . Where to apply Website https://www.academictransfer.com/en/jobs/362521/phd-candidate-in-ai-driven-3d-s… Requirements Additional Information Website
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to participate in a team whose goal is to support human brain research from initial donation to state-of-the-art cell and molecular tissue research. This is a full-time day shift position located at the Harborview
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Isolation of primary skin cells from human skin specimens and in vitro cell culture. Organization and maintenance of cellular and tissue biobank. Generation of 3D engineered skin, cartilage and other tissues
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organization of C. albicans. Together, these studies aim to provide a mechanistic understanding of Bdf1-dependent morphotype regulation and establish a high-resolution 3D imaging workflow for Candida cell
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fellow to join the 3D Stem Cell Biology Research Lab (https://www.hashinolab.com ) and study normal and pathological development of the human inner ear using stem cell-derived organoids as a model system