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part of our team, you will leverage state-of-the-art single-cell, spatial and organoid technologies in a collaborative and interdisciplinary environment. Research focus We welcome candidates with a
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. The Ravnskjaer lab is headed by Assoc. Prof. Kim Ravnskjaer and focuses on cellular crosstalk in the regulation of liver function in health and disease. For this we apply single cell- and spatially resolved
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employ cutting-edge single-cell and spatial omics technologies with bioinformatics and machine learning to decipher principles of gene regulation underlying cell identity and its disruption in human
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-epithelial crosstalk in colorectal cancer initiation, progression and therapy resistance. Using state-of-the-art single-cell RNA sequencing (scRNAseq) and spatial transcriptomics on CRC patient samples, we
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. The position will be available for a 3-year period. You will be part of a research environment focusing on applying digital solutions to map spatial and temporal variability of crop growth as well as evaluate
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of epigenetic regulators in regulating therapy resistance. Utilize molecular, cellular, and biochemical techniques including CRISPR, scRNA-seq and spatial transcriptomics, flow cytometry, and 3D tumor modeling
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, focusing on atherosclerotic plaque samples collected from local hospitals in the region. Your primary responsibility will be to develop smooth muscle cell-based assays guided by single-cell spatial
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alterations in cancer cells and tumor tissues, tumor-stromal metabolic crosstalk, and immunometabolism, using cutting-edge targeted and untargeted metabolomic technologies and spatial LC-MS/MS-based metabolic
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, various cutting-edge experimental and computational approaches in the areas of functional genomics, cell biology, biochemistry, single-cell/spatial multi-omics, data mining, drug screening, and disease
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, and large language models (LLMs), for the analysis of high-throughput multi-omics datasets (especially single-cell and spatial omics) and large textual corpora (e.g., scientific literature). Our