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be on development of novel computational methods for gaining fundamental insights into healthy and diseased human tissues and immune cells of the heart, cardiovascular system, and gastrointestinal
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, including people’s interactions with the natural world and consequences for human wellbeing. MGeo advances and deploys cutting-edge methods, models and technologies in environmental science, quaternary
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molecular biology, genetics, and plant developmental biology or related knowledge that the employer considers equivalent. Prior experiences with molecular biology methods, cell biology and plant developmental
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biology to pioneer research in immunology using single-cell and spatial transcriptomics data. The focus will be on development of novel computational methods for gaining fundamental insights into healthy
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for carrying out research in the Chinmay Dwibedi lab (www.dwibedilab.org ) in close collaboration with local and international experts. Specifically, you will employ Bioinformatic and statistical methods
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principles, and computer-based analysis methods. The research will include investigating aggregated data from genetics, archaeology and linguistics Requirements PhD degree in Population genetics
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spectrometry. The project involves developing characterization methods using mass spectrometry (FT-ICR, TOF-SIMS) and imaging techniques (SEM, TEM) for both biological and inorganic materials. Responsibilities
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are currently Uppsala University's third largest department, have around 350 employees, including 120 teachers and 120 PhD students. Approximately 5,000 undergraduate students take one or more courses at the
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. Optimizing knowledge of treatment effects: Using causal inference methods to rigorously assess the safety and effectiveness of medications in real-world patient populations. Defining individualized treatment
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the brain-to-blood clearance assay. This is a new method, developed at a theoretical level specifically for this consortium, and our laboratory therefore has no prior experience with it. It is therefore