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quantitative analysis and predictive modelling of biomaterials, tissues, and regenerative constructs. The project combines advanced 2D and 3D bioimaging, including micro/nanoCT, confocal microscopy and SEM, with
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, and regenerative constructs. The project combines advanced 2D and 3D bioimaging, including micro/nanoCT, confocal microscopy and SEM, with computational image analysis, computer vision and machine
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with no cure, and we urgently need new ways to understand and treat it. This exciting PhD project combines cutting-edge stem cell technology, 3D bioprinting, brain cell models, and advanced genomic
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? No Offer Description At AMADE (Analysis and Advanced Materials for Structural Design), we are a research group from the University of Girona (UdG) internationally recognised for our leadership in
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the OPUS-LAP grant: "3D Genome Reorganization During Induced Cellular Senescence in Pancreatic Cancer: Insights from Single-Chromatin Fiber Analysis" Grant No. 2024/55/I/NZ5/03165. Where to apply E-mail
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models that includes breeding colony management and genotyping. Performs advanced 3D and spatial imaging (confocal, LSFM, Xenium spatial transcriptomics) and associated computational image analysis
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, applied physics, or a closely related subject. You should enjoy building things and be prepared to work across mechanics, materials and electronics. Experience with microfabrication, finite element analysis
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for iPSC cell culture, maintenance, methodology, and data analysis. You will contribute to team efforts related to stem cell biology, the development of new biological assays, and 3D cell culture on 3D
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for iPSC cell culture, maintenance, methodology, and data analysis. You will contribute to team efforts related to stem cell biology, the development of new biological assays, and 3D cell culture on 3D
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embedded within the Quantitative Healthcare Analysis (qurAI) group and conducted in close collaboration with the CARA Lab and clinical partners in the Netherlands and abroad. You will work with large, multi