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of biomarkers for disease risks, diagnosis, drug response and monitoring of health. The precision medicine research is expected to make use of existing strong assets in Sweden and abroad, such as molecular data
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method for understanding complex genomic alterations. While sequencing technologies have made a leap forward, work is still needed on the computational side to fully use the technology. This is an
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. This project asks: how do genetic, environmental, and lifestyle factors interact across different ancestry groups to influence CMD risk, and can ancestry-specific insights inform more precise prediction
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will combine state-of-the-art computer vision, modeling and archived specimens to determine biotic and abiotic factors driving spatial variation in molt phenology. It will use museum genomics to recover
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, Stockholm University and Uppsala University. The center also collaborates with several other universities. The employment will be placed at the Department of biochemistry and biophysics, at Stockholm
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or predictive modelling of pathogen biology or host-microbe systems for which multidimensional, genome-scale experimental data are now available or it may use population-scale genetic, clinical, or public health
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technologies. We use innovative technologies that combine CRISPR perturbations with spatial transcriptomics—enabling precise tracking of how gene changes influence the tumor’s invasion routes through brain
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and administrative work, may also be included in the employment. In this case the position will be extended to allow four years of full-time graduate studies. Requirements Entry requirements
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expected to make use of existing strong assets in Sweden and abroad, such as molecular data (e.g. omics), imaging, electronic health care records, longitudinal patient and population registries and biobanks
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considered a plus. Admission Regulations for Doctoral Studies at Stockholm University. About the employment We offer a fixed-term employment as a doctoral student according to Chapter 5 of the Higher Education