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modelling and computational neuroscience to human mobility behaviour; Modelling how people build and update internal representations of urban space; Integrating behavioural data with neurophysiological
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(Associate Professor level) in the field of live-cell in vitro modelling of Parkinson’s disease as per 1 January 2027 or as soon as possible thereafter. The position is a 5-year, full-time position, with
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Department of Biology, Section for Functional Genomics, invites applicants for an assistant professor in Molecular Cell Biology of DNA repair. The position is part of the research project “Genome
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contribute to research and teaching within travel behaviour and sustainable mobility and become part of an internationally recognized research environment with strong links to policymakers, public authorities
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. The project focuses on developing and applying single-cell multi-omics approaches to uncover regulators acting upstream of known epigenetic writers and erasers during embryonic development. Expected start date
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, one of the most fundamental functions of living organisms. Following a DNA double-strand break, the cell forms condensates at the damaged site, and at the same time the tumor suppressor protein p53
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on how neuronal circuitry is affected in brain disorders in animal models. For this you will implement advanced approaches such as single-cell transcriptomics together with in vivo circuit manipulation and
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, including highly polar, persistent, mobile and fluorinated compounds, in wastewater, sludge and advanced treatment systems to support machine-learning models for contaminant fate and removal; and large-scale
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these responses can be harnessed therapeutically. Current research integrates advanced immunophenotyping, systems immunology, single-cell multi-omics, viral genomics, and functional immune assays to dissect
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research towards better cardiometabolic health. Through collaborative interdisciplinary research from single-cell genomics to whole-body systems, CBMR aims to transform the basic understanding