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. Prior experience with animal models, 3D culture systems and/or computational analyses will be an advantage. The salary will be according to EPFL standards. Informations Formal applications should be
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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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protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
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related field by the start date. Strong background in atmospheric/air quality modeling with 3D chemical transport models (e.g., CMAQ, CAMx, WRF-Chem, GEOS-Chem). Experience working in high-performance
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and evaluating efficacy in animal models. The selected candidate will develop 3D biomodel of the human nasal cavity based on imaging data obtained from human diagnostic scans. He/she will also
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: Research and Lab Operations Design and Fabrication: Lead the development and optimization of cardiac patches and injectable biotherapeutics using advanced biomaterials and nanovesicle technologies. Animal
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animal models and human participants. Particular emphasis will be placed on identifying translational motor features that can be robustly and consistently quantified across species, including movement
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Research Associate. Our lab specializes in precision cardiovascular medicine, leveraging cutting-edge approaches such as human iPSC-derived 2D cardiovascular cells, 3D vascularized cardioids, CRISPR gene
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, Skills, and Abilities Skills in computational fluid dynamics, geometric morphometrics or 3D shape analysis, and kinematics. Preferred Qualifications Strong backgrounds in vertebrate and functional
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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