18 algorithm-development-"Multiple"-"Prof"-"Prof"-"Simons-Foundation"-"U" Postdoctoral positions at Nature Careers in Sweden
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sequencing and synthesis to design useful cell behaviors. The scope of this project is to combine multi-gene control technology and computer algorithms to develop a foundational discovery platform for future
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and in vivo model systems, applying multiple omics methods. You will be working with clinical samples, method development and several molecular biology techniques, especially PCR and sequencing as
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The Rantalainen group is focused on application of machine learning and AI for development and validation of predictive models for cancer precision medicine, with a particular focus computational pathology. Our
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the Karolinska Neuroimmunology and Multiple Sclerosis (KNIMS) division which gathers around 40 researchers working on different aspects of the pathogenesis of Multiple Sclerosis (MS) and other neurodegenerative
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develop new quantitative tools to study human tissue in a clinically relevant context. Gothenburg is quickly becoming a hub for life sciences in the Nordics, with a strong focus on research and innovation
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laureate Emmanuelle Charpentier, who discovered the CRISPR-Cas9 gene editing technology during her time as a scientist and group leader in Umeå. The ‘EC’ Postdoctoral fellow will: Develop a collaborative
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A 2-year funded postdoctoral fellowship position in understanding the molecular mechanisms and behavioral consequences of normal and abnormal mouse spinal cord development has become available
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metabolism with applications in neuron development B. Multiscale physiological response of reef-forming marine algae to environmental stress C. Financial Risk Management and Decision Making in Biodiversity
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elements that don't create proteins but profoundly influence how plants develop and respond to their environment. Our research group has pioneered computational tools to identify these genetic elements, but
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Lallemend at the Department of Neuroscience, Karolinska Institute, to investigate the molecular landscape of the inner ear during development and under various physiological and pathological conditions. The