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an effective immune response against any target. We study pre-clinical mouse models as well as human patient samples to translate findings from bench to bedside and back again. The main aim is advancing
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using 2D and 3D morphometrics approaches including light structure 3D scanning, CT scanning, photogrammetry, and caliper measurements; conducting phylogenetic comparative analyses including OU modeling
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of port sustainability, specifically in sustainable economic models and climate change adaptation and mitigation Where to apply E-mail [email protected] Requirements Research FieldEngineering
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, educating young leaders through a rich liberal arts curriculum and creating new knowledge through world-class research and scholarship. Learn more about LSA at: http://www.lsa.umich.edu/. Job Summary The
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of tissue function and degeneration with age. For more information on the work of the group, please visit: https://www.babraham.ac.uk/our-research/signalling/rahul-samant and https://samantlab.github.io
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experience beyond graduate school Familiarity with 2D and 3D modeling software and working knowledge of 3D printing Ability to guide students in integrating moving and/or motorized elements into multimedia art
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Laboratory of Computer Science, Robotics and Microelectronics of Montpellier (LIRMM) and Alternative Energies and Atomic Energy Commission (CEA) | Montpellier, Languedoc Roussillon | France | 2 months ago
robotics and to develop a comprehensive methodology for the design, modeling, control, and experimental validation of frugal multi stable robots, from the elementary module to the assembled robot. The work
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student-scholarship holder at the Poznan Doctoral School of Institutes of Polish Academy of Sciences
of Sciences in Poznań receives funding from the OPUS LAP 30 (2025/59/I/NZ2/02573) titled “Hypoxia-Driven Metastatic Potential in NSCLC: Multi-Modal Transcriptomic Profiling in 3D and Orthotopic Models” to fund
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these processes. The successful candidate will work with animal models and clinical samples and will apply a range of cutting-edge techniques, including flow cytometry, 3D microscopy and transcriptomic analyses
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and will participate in both in vitro (2D and 3D cell and organoid culture) and in vivo (mouse model) research. The role involves conducting functional studies to investigate cellular pathways altered