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molecular biology, quantitative imaging and biophysical approaches to investigate cell shape changes in cultured cells and in vivo. Current projects in the lab include investigating the regulation
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Project Title: Characterising clonal dynamics of somatic mutations in vivo for early prediction of carcinogenicity using advanced error corrected next generation sequencing Supervisor: Dr Alex Cagan
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fluid dynamics (CFD) simulations, Finite Element Analysis, manage and execute the procurement of the build, run the aerothermal testing and process and communicate the results. The skills, qualifications
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and functional/molecular studies. Whilst the focus of this recruitment drive is to find a candidate with genomics expertise, enquiries would also be welcome from molecular biologists interested in using
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titanium alloys. The research will involve: Alloy production via arc melting, hot rolling, and simulated forging trials Microstructural characterisation using electron microscopy (SEM & TEM), X-ray
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diversity. We work to identify the genes that regulate plant development, describe the evolutionary histories of these genes, and connect the molecular evolution of developmental genes to the evolution
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, including microscopy, tissue culture and molecular biology is required. Informal enquiries are welcome and should be directed to Dr Tetsuo Hasegawa (th647@cam.ac.uk ) and lab website is available for more
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recordings (Neuropixels) and behaviour in mice, while assessing their mental state. We ask questions such as how are noisy sensory inputs recognized and represented in the brain? how are dynamic texture sounds
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) leverage existing mutant libraries to define molecular mechanisms of influx, efflux, and metabolism, and (iii) use this information to employ in silico screening and generative AI methods to create new
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causing neurological deficits. We are beginning to understand which patients respond best to aggressive therapy and which do not need such aggressive surgery. Much of this is based on molecular subtypes