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development of alternative methods to animal testing for biomedical and toxicological applications Establishment of 2D cell culture and 3D organoid models and integration to microphysiological systems in
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for the modeling and simulation of 3D reconfigurable architectures e.g. based on emerging technologies (e.g. RFETs, memristive devices), and the evaluation with e.g. machine learning and image processing benchmarks
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addresses these challenges in an interdisciplinary approach of A) polysaccharide chemistry, B) analytics, C) modelling, and D) bio engineering applications. Early career researchers with backgrounds in (food
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goals in the PhD project below we now plan to exploit the potential of 3D retinal organoid models in our research projects. PhD project: USH1G patient-derived retinal organoids to model retinal
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principles of embryonic development. Our team employs various vertebrate models, from sharks to mice, and modern approaches (single-cell omics, multiplexed HCR, 3D and high-resolution imaging, micro-computed