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tumor behavior. The project combines advanced tissue analyses and experimental cell models. The main responsibilities of the position will be to generate and culture breast cancer organoids, and neurons
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. The lab focuses on determining the mechanisms of neural circuits and the contribution of specific cell types to behavior. In this particular project, you will investigate how the hippocampus forms spatial
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possibility of extension) Start date: August 2026 at latest The students will be enrolled in the structured PhD programme in Computer Science at Sapienza University of Rome, Italy: https://www.uniroma1.it/en
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functions to work properly. Please turn on JavaScript in your browser and try again. UiO/Anders Lien 2nd January 2026 Languages English English English Researcher in Cancer Immunology and Cancer Cell Death
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of the immune cell environment that are associated with treatment response by comparing immune cells from patients with good and poor responses. Immune cells from patients will be analyzed using single-cell
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on physics-based computational modelling. Key activities include crystal-plasticity-based finite-element (CPFE) simulations, unit-cell and microstructure-resolved models, and the development of modelling
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to industry 6 months mobility abroad for pilot plant experiments Academic publications and popular science dissemination Participate actively in the Process Systems Engineering research group Participate in
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of best dopaminergic cell models (e.g., SH-SY5Y, iDopa, iPSC-derived neurons) for selection of mitochondrial and dopaminergic markers and evaluation of cellular responses to drug treatment. Completing
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Code9019StreetSykehusveien 21Geofield Contact State/Province Troms City Tromsø Website http://www.norceresearch.no Street Sykehusveien 21 Postal Code 9019 E-Mail kjho@norceresearch.no Phone 94240262 Mobile Phone +4793418859
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breast cancer patients, explore the activation mechanism of antiviral defense pathways in cell cultures and perform bioinformatics analysis of data. The work will be performed in a modern molecular biology