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ecology & physiology, generative models, artificial intelligence-based image super-resolution, and three-dimensional reconstruction. The scholarship is full-time for two years with a start date of February
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zebrafish models, including CRISPR/Cas9 mutants and advanced multicolor lineage-tracing tools, the project combines genomics, live imaging, and in vivo regeneration assays to uncover how satellite cell
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Fennoscandian ionospheric measurement systems, e.g., from advanced radar systems such as EISCAT_3D in northern Fennoscandia and from the Kiruna ALIS_4D Auroral Large Imaging System. Our developments will be used
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variety of techniques, such as patch-clamp electrophysiology, FIB-SEM volume imaging, tissue clearing (iDISCO), and/or single-cell sequencing. The postdoctoral researcher will have the opportunity to: lead