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processing stage of the olfactory system, adjusts how it encodes odours in response to behavioural context. You will use in vivo two-photon calcium imaging in mice, alongside behavioural assays and
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Outcome Network (ICON) on an NIHR-funded Better Methods, Better Research (BMBR) project developing the Multiple imputation framework for missing data. This collaboration with University of Warwick, aims
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interventions. We will enable collaboration between communities, academia, health and care, to drive meaningful change in health equality and social connection. In the process, we will impact research and policy
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apply them to cutting-edge single-cell datasets generated within the lab and from public resources. There is significant scope to shape the project around your interests, including live-cell imaging, flow
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blood flow and oxygenation. This will require surgical induction of chronic hypoxia in mice, and electrophysiological and imaging techniques and analysis. You will be expected to design and perform your
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development of suitable demineralisation protocols including artificial lesion production and high-resolution imaging. This post will focus specifically on developing reliable laboratory models for studying
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intestinal epithelium), imaging, and high-throughput screens. The successful candidate will have a postgraduate degree, ideally a doctoral degree, in a relevant topic, relevant experience in molecular
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at Liverpool and with partners across the UK and internationally. The role involves prototype design through fabrication, characterisation and system-level demonstrators. We welcome applications from candidates
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. This is an exciting opportunity to work across the full innovation pathway, from materials development and electrochemical characterisation through to prototype cell manufacture and technology scale-up. You
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ability to contribute to broader management/administration processes Contribute to the planning and organising of the research programme and/or specific research project Co-ordinate own work with others