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, understand, and develop therapies for rare genetic disorders. The group is primarily computational but partners with multiple international labs (including Harvard, Yale, UC San Francisco [UCSF], and the New
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Postdoctoral Researcher. The group aims to identify, understand, and develop therapies for rare genetic disorders. The group is primarily computational but partners with multiple international labs (including
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transmission at multiple scales’, working with researchers at the Universities of Manchester and Cambridge, and the London School of Hygiene and Tropical Medicine. The project will involve the analysis of whole
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period of up to 6 months. The is funded by the Department of Chemistry, Oxford University, aligned with its Strategic Research Funding in Sustainable Energy. *Find out more about the research and group
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to take the next step in your career to become a world-leader in hyperpolarised imaging. The Xenon and 13C teams share staff which enables cross-disciplinary idea sharing and sequence development, as
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research aligned with the project aims outlined by Dr Pathania and funded by Ludwig Cancer Research. You will critically analyse, interpret and present experimental data with scientific rigor and
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and decision-making in humans and machine learning systems. The post-holder will have responsibility for carrying out rigorous and impactful research into human-AI interaction and alignment, with a
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use computational approaches to mine natural biodiversity in gene sequences to identify engineering targets to increase lipid content and enhance the water use efficiency. The project will make use
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, including RNA work, protein purification, mammalian cell culture, next generation sequencing genome-wide analyses (ChIP) and mass spectrometry. You will establish and optimise protocols, design and accurately
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techniques for example multi-parameter flow cytometry, cell culture, systems serology, ELISpot and ELISA. You should have some knowledge of single-cell RNA sequencing (RNAseq) and other relevant next