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of virus evolution into mathematical models of spillover infection and transmission of prototype viruses representing viral families concern to support the development of methods for virus sequence analysis
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or image analysis. The post is full time and fixed term until 30 June 2028. The closing date for applications is noon UK time on Friday, 11 July 2025 You will be required to upload a CV and Supporting
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experience of the laboratory delivery of multiplex imaging datasets of tissue samples as well as significant laboratory experience of general methods including immunoassays and cell culture. You will have
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group aims to determine regulatory pathways affected by disease by implementing the use of spatial proteomics combined with transcriptomics and live imaging. The total proteome of a neuron includes a vast
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to target specific transcription factors (iii) use of high content imaging and AI to phenotype these cultures (iii) use of bulk and single-cell RNAseq to characterise the transcriptional profile of each cell
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knowledge in laser spectroscopy and imaging, ideally in vibrational or acoustic microscopy. Knowledge of mechanical testing and complementary molecular spectroscopy methods is desirable. Please ensure you
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ZEISS LLSM, ZEISS Elyra, ZEISS 980 confocal, PicoQuant FLIM, PicoQuant Luminosa, and bioimage analysis of fluorescence microscopy images. You must have the ability to manage your own academic research and
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and Immunity and work under the supervision of Dr Abhinay Ramaprasad (Principal Investigator). Malaria parasites proliferate within red blood cells through schizogony, a remarkable and unique process of
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of papyri and related material in Greek, Latin, Demotic and Coptic, as well as images and 3D reconstructions of relevant artefacts. The postholder will be responsible for the Coptic material. As
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Drosophila oocytes. This is an excellent opportunity to lead an exciting project combining approaches including live-imaging microscopy, genetics, mass-spectrometry and biochemistry. The position is