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with 3D cell culture, organoids or tissue engineering will be considered a strong advantage. Experience with image analysis software (ImageJ/Fiji) and scientific computing tools (Python, R or equivalent
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. Solid knowledge in cell and structural biology, as well as expertise in sample preparation and 3D electron microscopy image analysis, are required. Holder of a PhD in biology or biophysics, you have
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-solid interface. To connect materials to devices, you will prototype booster-bed reactors from mL to L scale by 3D printing and support the transfer of promising formulations toward scalable, solvent-free
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EndoCartoScope: Transforming any Endoscope into a Smart Device for Intraoperative 3D Localization, Navigation and Mapping. (GA: 101211633). Profile: PhD in a field related to 3D reconstruction and/or map building
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, electrical polarisation and, then evaluate cell-matrix interactions using live-cell imaging, molecular assays and, spatial transcriptomic approaches to identify key mechanisms linking matrix mechanics
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, and transcytosis in the context of malaria immunology. Develop and optimize 2D and 3D endothelial-based assays to evaluate molecular modifiers of IgG handling and to investigate mechanisms
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of wildtype and Bdf1-mutant C. albicans strains. The project will also involve developing high-resolution 3D X-ray imaging approaches to investigate morphotype-dependent changes in the nuclear and subcellular
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desire to learn new (technical) skills; and proficiency with Python, Javascript, XML, CSS, and LaTeX. PREFERRED: Experience creating plots and 3D interactive images in Mathematica, MATLAB, or python; ties
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/PhD in Geosciences, Environmental sciences, remote sensing or computational sciences or image vision and related fields Language skills: Excellent English skills, German is beneficial Desirable skills
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models to evaluate therapeutic efficacy and pharmacokinetic profiles. Gaining exposure to cutting-edge transcriptomic, proteomic, and "imageomic" (high-content image informatics) datasets, as