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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
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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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involved in the Mars 2020 Perseverance Rover mission, with a focus on photogrammetry and imaging techniques. The contributions to the mission include topography modelling and innovative visualization
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, blood clots, highly-efficient batteries, multiphase flow in colloidal and geological systems, and the burgeoning field of metal 3D printing. Job Description: As this far-field neutron interferometer will
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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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nanomaterials using negative-stain EM and cryo-EM single-particle analysis (with an emphasis on sub-100 kDa protein structure determination). 2. Process and analyze EM data, perform 3D reconstructions, and build
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differentiating these stem cells into organ specific cell types and 3D organoids together with CRISPR technology, you will study how genetic variants shape cellular responses to chemical exposure. Combined with
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-microbiome interactions in the female reproductive tract, using microfluidic organ-on-chip platforms to model vaginal epithelial and microbial dynamics in real time. The postholder will contribute to sample
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synthesis, characterization, drug release studies, antibacterial assays, and biological evaluation under in vitro, ex vivo, and in vivo conditions using a porcine model. The project will also utilize