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aims to push the limits of label-free mass measurement of biomolecules in solution by integrating advanced optical techniques with state-of-the-art data analysis. Building on recent developments in mass
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toxicological exposure conditions; Employ imaging, microscopy, and quantitative analysis to assess neuronal health in fluorescent (GFP-labelled) C. elegans strains; Integrate neurobiological, toxicological, and
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transformer architectures for multimodal fusion (RGB + thermal, intraoperative video, OR signals, EHR, surveys); develop temporal and cross-attention components for longitudinal risk trajectories. Build robust
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Researcher in Mammal Paleobiology / Earth System Evolution to join the Department of Archaeology at the Faculty of Humanities, University of Oulu. The position is part of the Deep History of Human Past
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-molecule TIRF microscopy, biochemical reconstitution, and fluorescent labeling, we will watch individual RNA molecules and degradosome complexes at work, capturing millisecond-scale dynamics that shape gene
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highly multidisciplinary environment that spans fundamental discovery through to patient care. Our researchers benefit from outstanding core facilities, including state-of-the-art label-free bioimaging
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questions in the areas of self-supervised/label-efficient learning and explainability of deep neural networks (XAI) are being developed, particularly for use in biomedical applications. Further information
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Join an ambitious, multidisciplinary project at the crossroads of interaction and urban design, where your research can shape the vision of open and accessible cities!. This position is part of
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design, where your research can shape the vision of open and accessible cities!. This position is part of the NWO-funded research project BEAT (Building Equitable Accessibility Together), which will start
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(based on biomaterials and living cells), including their efficient deployment on embedded hardware, as well as the design and management of the supporting data pipeline. You will be part of