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Join a World-Leading Research Team to work on Colour X-ray Imaging! Two positions available. Are you ready to push the boundaries of imaging science? The University of Manchester invites
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manipulation of filamentous fungi, ii) in vitro and/or in vivo infection models, iii) confocal/microfluidic- and/or imaging flow cytometry-based experimentation, iv) fungal genomics and transcriptomic analysis
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function using a combination of in vitro and in vivo studies, using cellular and mouse models of hypertension and/or diabetes. A combination of clinically relevant non-invasive imaging approaches to monitor
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texts. By using a mixed method approach, we propose to make the erased texts readable again, and then edit, translate and study them. Combining multispectral image capture and analysis with machine
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from high-throughput sequencing experiments (incl. RNA-Seq, DNA-seq, ATAC-seq and ChIP-seq) and from single-cell and spatial omics experiments, including high dimensional imaging and mass cytometry
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role involves in vivo imaging approaches (e.g. multi-photon microscopy and optical imaging spectroscopy) to assess neuronal and vascular function in the hippocampus and neocortex of awake mice. You will
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-alzheimers-disease-risk). Key responsibilities include: Breeding and maintaining transgenic mouse colonies Performing surgeries to support in vivo imaging (e.g. multi-photon microscopy, optical imaging
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, you'll work with large-scale multimodal datasets, clinical trials data, and population imaging studies to drive innovation in personalised medicine and in silico trials. If you're passionate about pushing
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, including subcellular fractionation, live-cell imaging, RT-PCR and ELISA techniques. Successful candidate will become a member of the CAPKR research team and be fully involved in a project entitled “Improving
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range of techniques, including mass spectrometry and flow cytometry analyses, state-of-the-art imaging techniques (e.g. super-resolution, confocal, electron microscopy), and cells expressing tagged