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mouse mutants and techniques such as single-cell RNA sequencing and live confocal whole-mount imaging. We offer an international, inspiring, and supportive research environment and excellent research
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/researchgroups/nuclear-organization-by-actin) . We are seeking a motivated researcher to join our team in the field of cell and molecular biology. By combining advanced imaging techniques with functional genomics
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This project explores how mutations in chromatin-modifying genes disrupt early neurodevelopment by systematically profiling in vitro neurons using multimodal single-cell and spatial profiling. By
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team in the field of cell and developmental biology. Our team uses the developing wing of the Drosophila melanogaster as a model system to investigate how tissue morphogenesis and intercellular
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working together to understand the molecular mechanisms which regulate immune cell trafficking and function in vivo. We are especially interested in the role of integrins in immune system regulation and in
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causing fluid leakage and metastasis. We are especially interested in the regulation of endothelial cell-cell junctions, and signaling by endothelial growth factor and cell adhesion receptors. For more
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This project aims to identify the spatial genetic and adaptive dynamics of tumour microbiome in colorectal cancer. To do so, we will integrate single-cell genomics, transcriptomics and clinical data
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with a PhD / MSc, a solid publication record, and strong background in wet lab work within the field of immunology. Primary human B cell culture skills, gene editing with crispr-cas9 along with human
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. We develop machine learning methods tailored for high-dimensional, multimodal biological data, with applications ranging from single-cell genomics to real-world clinical datasets. We are active
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investigation and will develop an advanced computer modeling framework. By simulating processes at various scales, from the atomistic to continuum, we aim to reveal how temperature and saturation fluctuations