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Field
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Do you want to contribute to improving human health? Our lab is advancing precision cancer medicine through deep learning models of the molecular networks within cells. The models encompass
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neurons and Parkinson’s disease. The successful candidate will work with human pluripotent stem cells and human tissue, and will perform amongst others, single cell omics, cell engineering and functional
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to validate single cell RNA sequencing and proteomic results. Serological study on human cohort will be assessed ELISA and Luminex-based method to determine the antibody/inflammatory response and flesh out
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Do you want to contribute to improving human health? Decscription of the researchgroup Our lab is advancing precision cancer medicine through deep learning models of the molecular networks within
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Do you want to contribute to improving human health? Our lab is advancing precision cancer medicine through deep learning models of the molecular networks within cells. The models encompass
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and genocide studies. The field includes research on Holocaust history and historiography, comparative analyses of genocide and other grave violations of human rights, as well as research on the effect
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immune cell populations to validate single cell RNA sequencing and proteomic results. Serological study on human cohort will be assessed ELISA and Luminex-based method to determine the antibody
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stimulating environment in a rapidly moving research frontier. Your mission The Mjösberg group studies the development, regulation and function of innate lymphoid cells (ILCs), in humans, and how these cells
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conducted under the leadership of the Principal Investigator. The work mainly constitutes experimental in vitro work in the laboratory with substances of human or recombinant origin, including cell culture
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shape early human development, aiming to understand the long-term outcomes of these exposures on neurodevelopmental and mental health. We use state-of-the-art in-vitro cell culture models of the brain and