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within the research project “From Clay to Code: Investigating Microbial Evolution in Response to Human Influence” funded by the Helsinki Institute of Life Sciences (HiLIFE). The project aims to establish a
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in vivo genetic mouse models, advanced live and intravital imaging, engineered microchip models, primary cell co-culture systems and novel microscopy and analysis methods. The research will provide
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programming skills and interest in code development; Have excellent skills in spoken and written English; Research interests close to the project scope and prior experience of computational physics and/or
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ammonia. The applicant should: Hold a doctoral or master degree in relevant field such as physics or chemistry; Have good programming skills and interest in code development; Have excellent skills in
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-of-the-art approaches in cell biology, imaging, and in-cell structural biology to reveal nanoscale membrane architectures that drive lipid flux in their native context. The group operates across two
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techniques such as mouse models, in vivo immune cell functional assays, flow cytometry, cell biology, metabolic assays, imaging and omics-techniques (next generation sequencing). Applicants should possess a
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organelle biogenesis in metabolic health and disease. We use state-of-the-art approaches in cell biology, imaging, and in-cell structural biology to reveal nanoscale membrane architectures that drive lipid
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the Department of Microbiology located in Viikki campus in Helsinki, Finland. Position description The successful candidate will work within the research project “From Clay to Code: Investigating Microbial
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pension fund, a generous holiday package, sports facilities, and opportunities for professional development (https://www.helsinki.fi/en/about-us/careers ). Required qualifications PhD (or near completion
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the Neuroscience Center in the University of Helsinki (see: https://www2.helsinki.fi/en/researchgroups/synaptic-plasticity-and-development ).The research interests are focused on functional maturation of neuronal