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Field
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these analysis methods to highly informative multimodal microscopy data and develop techniques to integrate correlated structural and molecular analysis into the natural 3D tissue space. This integration will
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), Computer Science (Machine learning, Efficient Algorithms and High Performance Computing), and Physics (Image Formation Modelling). Your project is part of the DUAL-IMPACT project, which focuses on the development
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to address key experimental and computational challenges currently limiting the clinical translation of spatial biology. By integrating multi-omics approaches, enabling the transition from 2D to 3D tissue
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. The project will combine hydrogel formulation and characterization, microfabrication, 3D cell culture, advanced microscopy, and functional biological analyses. Particular emphasis will be placed on developing
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. Desirable Demonstrated knowledge/experience in: multiphase flow porous media flow microfluidic fabrication and experiments 3D printing surface chemistry Demonstrated programming skills in: Matlab C++ Python
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, perspectives, and their personal skillset to the discovery, development, and commercial translation of new 3D nanoscale magnetic metamaterials. What You’ll Do in this Project Size, weight, and power: the future
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information (e.g. 3D building models), enabling safe autonomous navigation in complex urban environments. The algorithms will be validated using realistic simulations and experimental measurements obtained from
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centres, Alicona uCMM (Optical 3D measuring system), and various additive manufacturing technologies. PoliMi is in Lombardy, the region with the highest density of industries in Europe and the third most
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willing to acquire this. You have a good knowledge of cell biology, molecular oncology, signal transduction, and immunology. You have experience with or an interest in 3D-cell culture models, patient
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. Preferential Requirements Additional professional experience in laboratory management, as indicated in the CV and/or motivation letter; Knowledge in 3D cell models, including spheroids, cloning and CRISPR/Cas9