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skills for functional genomic screen design and analysis. You will build CRISPR tools, design optimized pooled genetic screens (e.g. Perturb-seq–based approaches), and troubleshoot the experimental
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analysis. You have a good scientific background, are highly motivated and independent, and are able to work in an interdisciplinary team of medical doctors and engineers. Good programming skills
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of different immune cell subsets. These panels need to be validated and bioinformatics pipelines designed for standardized analysis of the data. In order to achieve the above a non-academic tenure track
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field Strong interest in multiscale neuroscience and translational research Experience with MRI analysis (preferably in rats) Skills in data analysis, programming, and quantitative methods Interest in
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with analysis of proteomics data is essential. You are highly motivated, creative and willing to work with human postmortem brain tissue and Parkinson model systems. Within this project most
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consequences in cardiomyocytes and other cell types, including neurons, and study how they interact. To achieve this, you will combine electrophysiological techniques, such as patch-clamp analysis and optical