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models using sophisticate genetic tools, in vivo time-lapse imaging and multi-omics methods to decipher the underpinning mechanisms of regeneration. Our findings provide new targetable mechanisms
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working together to understand the molecular mechanisms which regulate immune cell trafficking and function in vivo. We are especially interested in the role of integrins in immune system regulation and in
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soon as a suitable candidate is found, as a fixed 2-year position, with a possibility of prolongation. A 6-month trial period will be applied. The salary will be based on the University salary scheme
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University of Helsinki is one of the world’s leading universities for multidisciplinary research. Helsinki Institute of Life Science HiLIFE is an independent research institute that supports high
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Description University of Helsinki is one of the world’s leading universities for multidisciplinary research. Helsinki Institute of Life Science HiLIFE is an independent research institute
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neurodevelopment. Using induced pluripotent stem cell (iPSC)-derived human neurons with targeted gene knockouts, we will apply multimodal single-cell and spatial profiling—including RNA-seq, ATAC-seq, cell
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Chinmey Dwibedi’s group at MIMS, Umeå, through the NORPOD program. Summary of the project The post-doctoral project aims to uncover genetic and adaptive mechanisms of the tumour associated microbiome in