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the Danish Cancer Institute in Copenhagen, and you will have the opportunity to undertake a research stay in Copenhagen. You will be part of a cross-disciplinary team of cell biologists and bioinformaticians
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of the team and external partners, examine how specific microproteins regulate the activity of the transcription factor SOX2 using cell-based and epigenomic assays, and resolve the SOX2 microprotein complex
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microphysiological systems (MPS), are rapidly emerging as transformative and strategic technologies with the potential to redefine the future of health and life sciences. By integrating stem cell biology, patient
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable
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data; AI-based prediction of cell and exosome distribution in regenerative biomaterials. The candidate will receive interdisciplinary training in biomaterials research, advanced imaging, quantitative
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable
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of biomedical imaging data; AI-based prediction of cell and exosome distribution in regenerative biomaterials. The candidate will receive interdisciplinary training in biomaterials research, advanced imaging
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the Danish Cancer Institute in Copenhagen, and you will have the opportunity to undertake a research stay in Copenhagen. You will be part of a cross-disciplinary team of cell biologists and bioinformaticians
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collaboration with the Danish Cancer Institute in Copenhagen, and you will have the opportunity to undertake a research stay in Copenhagen. You will be part of a cross-disciplinary team of cell biologists and
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: Reconstruct and analyze large-scale, high-resolution ultrastructural maps of zebrafish forebrain circuits using 3D volume electron microscopy. Synaptic connectivity, cell type identity, and subcellular