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group dedicated to understanding the fundamental molecular mechanisms of metabolism. Our work focuses on how nutrient sensing pathways contribute to metabolic disease. We use a combination of cutting-edge
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includes large-scale precipitation and temperature manipulation in combination with reciprocal transplants of genotypes of common tansy (Tanacetum vulgare) and paper birch (Betula papyrifera) across four
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in pulmonary vascular cells; d) role of microRNAs in the development and progression of pulmonary hypertension. A multidisciplinary approach combining physiological, pharmacological, genetic
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computational infrastructure such as A100 and H100 GPUs, combined with pre-processed large-scale biobank data such as UK Biobank and ADSP, enabling you to work at the scale required for breakthrough research