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Field
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offers the chance to work with zebrafish disease models, explore new therapeutic targets, and gain invaluable experience in experimental techniques such as CRISPR gene editing, in vivo imaging, and
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volumes. This will be done by studying the flow patterns during mixing of the mycelia inside stirred vessels, using high speed imaging and particle image velocimetry (PIV) experimental set up already in
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involves two weeks of monitoring for each participant using actigraphy and Ecological Momentary Assessment (EMA), followed by functional Magnetic Resonance Imaging (MRI). With supervision and direction from
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of modern biochemical and imaging techniques. This includes: Supporting ongoing projects on the in vitro reconstitution and characterisation of biomolecular condensates. Performing recombinant protein
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imaging techniques. This includes: ¿ Supporting ongoing projects on the in vitro reconstitution and characterisation of biomolecular condensates. ¿ Performing recombinant protein expression and
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on the effectiveness, image, reputation and financial status of the Principal Investigator, the department and the university. Decision Making/Accountability: Works within well defined guidelines and
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others as part of a team. Responsibilities include: Assistance in performing tissue sectioning and staining, imaging, cell culture, and molecular biology experiments. Maintenance of mouse colonies
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imaging techniques (e.g. atomic force microscopy, confocal microscopy or electron microscopy) Evidence of experience in materials synthesis or characterisation e.g. rheology, deep eutectic solvents
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wide breadth of techniques to collect data, including: Microscopy Flow cytometry Fluorescent imaging ELISA Cytokine assays Cell culture assays including measurement of nanoparticle uptake Mouse handling
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through an understanding of the bigger picture and showing commitment to organisational values. Developing self and others Showing commitment to own ongoing professional development. Supporting and