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developed state-of-the-art tools for high spatiotemporal imaging of electrically active cardiomyocytes and their mitochondria, high-throughput metabolic assays, and unique molecular biology applications
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supported-lipid bilayers and performing Total Internal Reflection Fluorescence (TIRF) microscopy, together with advanced skills in quantitative image analysis. You will have experience isolating T lymphocytes
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, physical function, mental and social wellbeing after initiating burosumab. Access local clinical data to determine the predictors for clinical events, laboratory and imaging findings after initiating
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different modalities of microscopy (widefield, confocal, spinning disc, TIRF, super resolution), Image Processing (e.g., Fiji / ImageJ) and data analysis. • Good communication skills (written and oral
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systems paradigm within the area of AI has been widely researched since the early 1990s, but has come to prominence recently with the emergence of Large Language Models (LLMs). The possibility of using
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oral communication skills, and the ability to interact positively with external stakeholders. Experience with infrared or imaging and space instruments development, and/or vacuum and cryogenic systems
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-on experience in at least one of single-cell or spatial omics, imaging, or other high-dimensional biological data types. You interrogate existing literature critically, design rigorous experiments and deliver
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paradigm shift in our fundamental understanding of the charge-lattice interactions that govern such effects. This PDRA role will utilize several state-of-the-art spectroscopic techniques, such as transient
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management of group research computing infrastructures. About You You should be educated to degree level (preferably in biomedical/image analysis/medical research or an allied field) or have equivalent
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cancer biology, molecular biology, medicine, or neuroscience. Your expertise will include molecular biology techniques, advanced microscopy, quantitative image analysis, and primary tissue culture, all