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Two postdoc positions focusing on the gene-regulatory mechanisms controlling cancer biology are available in the group of Associate Professor Rasmus Siersbæk (Siersbaek group ) at the University
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Postdoctoral Researcher (m/f/d) to study the molecular mechanisms of somatic sensation. Our goal is to understand how mechanical stimuli, such as touch or pressure, are detected by nerve cells and converted
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-resolved fluorescence methods for studying protein-protein interactions and protein structure-function relationships in live cells. This project will focus on elucidating the structure-function mechanisms
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mechanical oscillators can be utilized for fundamental studies probing quantum mechanics in massive systems, as well as for applications in quantum information processing. The measurements are carried out
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. This interdisciplinary project offers an exciting opportunity to investigate protein–nucleic acid interactions within the cell nucleus and uncover the molecular mechanisms underlying global chromatin organization
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. quinolones, AHLs), quorum sensing pathways Preferably experience in working with metal chelators Experience in working with microbial cultures (preferably with biosafety level 2) Publications in peer-reviewd
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biology, epidimological data and AI-driven systems modeling. The successful candidate will develop and apply computational and machine learning approaches to decode the molecular and epigenetic mechanisms
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and perturb chromatin condensates in vitro and in cells, with the goal of revealing mechanisms that control genome organization and gene regulation. We are seeking an organized andcreative
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the molecular mechanisms linking white adipose tissue (WAT) inflammation to obesity, its metabolic complications, and responses to emerging therapies. We use systems biology and state-of-the-art omics
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processing challenges. By focusing on automation and enabling correlative imaging in particular, it will streamline image processing efforts and enable the elucidation of specific mechanisms of water-material