158 postdoc-position-in-image-coding Postdoctoral positions at University of Oxford in United Kingdom
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challenges, from reducing our carbon emissions to developing vaccines during a pandemic. The Department of Psychiatry is based on the Warneford Hospital site in Oxford – a friendly, welcoming place of work
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Postdoctoral Research Assistant in Single-Cell Imaging of Antibiotic Resistance We are seeking a Postdoctoral Research Assistant for the Gene Machines’ group, led by Prof Achilles Kapanidis
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together to answer some of the most important questions about the causes, prevention and treatment of disease. We are seeking to appoint a Postdoctoral Researcher in Biomedical Image Analysis to join the
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motility apparatus through single molecule fluorescence imaging approaches. Underpinning genetic and biochemical experiments will also be required. The project will build on our recent work in this area
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experience in genomic analyses, proteomic approaches, imaging analysis, iPS differentiation and bioinformatics would be especially welcome. The post available as a fixed-term contract for 2 years in the first
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, theoretical biologists and bioinformaticians, the holder of this position will perform experimental work with Candida and anaerobic gut bacteria from the human gut microbiome, with application of both in-vitro
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quantification. Find out more about the research and group here. Your Role As a postdoc on this project, you will be part of a dynamic team working at the intersection of computational biology, molecular
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the plasma membrane using both in vitro and cell-based approaches. In this endeavour the position is for a Postdoc with expertise in cell signalling pathways, protein biochemistry and in vitro cell biology
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post is fixed-term for 2 years and is available from January 2026. If you are interested in this position, and have the skills and experience we are looking for, please apply below. You will be required
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central role in developing and validating these advanced human model systems, applying molecular, imaging and electrophysiological methods to characterise disease-relevant phenotypes and drug responses