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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoc position in 3D Computer Vision, remote sensing ... The Laboratory of Visual Intelligence
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of sources and chemical transformations are not yet well represented or tested in large-scale models. The goals of this PhD project will be to better represent these processes in a global 3D model, to test
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dedicated computing resources (3D visualization workstations, GPU servers). The research will be conducted in close collaboration with Philippe Nghe's team (Laboratory of Structural Cell Biology at École
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 12 hours ago
, characterization, targeted drug delivery or similar Preferred Qualifications, Competencies, and Experience Preference given to those with experience with 2D/3D cell culture techniques, cell differentiation, high
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experiments using cancer and stromal cell models, including CRISPR/Cas9-based genetic approaches to investigate Cx43-dependent mechanisms. Establish and characterise tumour–stromal co-culture and 3D models
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National Laboratory to accelerate materials discovery by integrating advanced 3D X-ray diffraction experiments, mechanistic modeling, and artificial intelligence. A powerful set of high-resolution 3D X-ray
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mechanical engineering (preferred field of study: mechatronics); knowledge of issues in the field of: 3D modeling, 2D technical documentation drafting, 3D printing technologies, and reverse engineering
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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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selection criteria include: -Research experience in liquid-core capsules; -Research experience in stem cell manipulation and culture -Research experience in 3D bioprinting 5. Eligibility: Applicants
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. Ideally, the candidate will develop and/or make use of innovative reductionist (i.e. 3D tumoroid models) or in vivo models (i.e. mouse genetics, in vivo lineage tracing, PDXs,…) and establish clinical