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complex, three-dimensional microstructure, and understanding how that microstructure influences electrochemical performance requires methods that can bridge the scales from 3D imaging to functional
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images, 3D models, expert breeding assessments of conformation, motion data, and whole-genome sequences. The research will be conducted at SLU in close collaboration with KTH Royal Institute of Technology
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network development. Experience with live-cell microscopy, fluorescence microscopy, or analysis of 3D/4D image data. Experience in cell biological or molecular biological laboratory work, particularly
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. Experience in deep learning, computer vision, or neural network development. Experience with live-cell microscopy, fluorescence microscopy, or analysis of 3D/4D image data. Experience in cell biological
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one cell to another, using 2D and 3D cultures of iPSC-derived cells. Duties The Doctoral candidate key tasks will be to manage and carry out the assigned research project, participate in the LipAgg
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live-cell microscopy, fluorescence microscopy, or analysis of 3D/4D image data. Experience in cell biological or molecular biological laboratory work, particularly related to intracellular trafficking