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team in the field of cell and developmental biology. Our team uses the developing wing of the Drosophila melanogaster as a model system to investigate how tissue morphogenesis and intercellular
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neural biology being desirable. Practical experience with model systems for the study of vertebrate embryogenesis, behavioral mouse studies, 3D imaging (OPT or LSFM) and photoentrainment is an advantage
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, extension is sought) Contract:TV-L Your tasks Molecular laboratory work with 2D and 3D cell culture models Experimental design, data analysis and interpretation Publishing research findings in peer-reviewed
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Supplemental Qualifications Background in neuroscience, developmental neuroscience/biology is preferred. Experience in 3D organoid development would be a positive. Candidate should be strong in molecular biology
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this role, you will study buried interfaces in monolithic 3D heterogeneous integration (M3D HI) systems, with a particular emphasis on vertically stacked 2D/3D semiconductor heterostructures. This position
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Doctor (Postdoctoral Researcher) who is in charge of 3D CT segmentation in producing data that can be used to build 3D finite element models of human jaws, spine, and lower limb. This person will help
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, penetration and toxicity of novel metallodrug-coated gold nanoparticles in a 3D-cell culture model of head and neck cancer. This is a highly inter-disciplinary project involving collaboration between Dr Nik
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Max Planck Institute for Plasma Physics (Greifswald), Greifswald | Greifswald, Mecklenburg Vorpommern | Germany | 3 months ago
of magnet systems. Your tasks Responsibility for developing computational models of the complex Stellarator 3D magnet system to be used in integrated Stellarator reactor studies. Improvement
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rely on mouse models (knockout mice, conditional knockout mice, transgenic mice, PDX mice) and primary cell culture and cell line models (2D/3D organoids). Applicants must be willing to work with mice
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infection and explore strategies to enhance mucosal immunity. Using a combination of in vivo animal models and ex vivo 3D cellular systems, we study airway-specific immune mechanisms that influence