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, video, and 3D content; multimodal and world models; neural rendering; simulation and animation; and digital, intelligent characters. The successful candidate is expected to provide academic leadership by
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Mixed Reality for 2D and 3D tissue data visualization in spatial biology Communication and interactive storytelling through biomedical data visualization Visualization of genome-mapped data (genomics
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effects, such as 2D/3D propagation and beam speckle patterns, which remain largely unexplored because they require significant simulation capabilities. This thesis aims to conduct a systematic kinetic
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both 2D and 3D models, for experimental studies. The ideal candidate will demonstrate a strong record of accomplishment in a relevant area of biomedical research, evidenced by first-author peer-reviewed
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. An additional focus of the group is the study of chromatin organization and 3D genome folding in somatic, stem, and cancer cells, using an integrated and innovative methodology that combines state-of-the-art
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mechanistic insights linking textural dynamics to sensory perception. Integrate multi-modal datasets from different mastication simulators into a 3D Principal Component Analysis (PCA) space, enabling
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the operation of the MIE Additive Manufacturing (3D) printing lab, assist students with 3D printing design, managements and upkeep of Capstone studio, Partnering with other MIE lab technicians to maintain all MIE
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to master, PhD students and postdoctoral researchers (full details on http://www.iciq.org/ ). The candidate will be in charge of the ICIQ’s Mechanical Workshop, that supports ICIQ researchers and external
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have experience or strong interest in one or more of the following areas: digital fabrication (laser cutting, 3D printing, vinyl cutting), electronics and Arduino, vector graphics design, 3D modeling
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-based composites using melt electrowriting printing, support for PhD students working with 3D extrusion-based and 3D liquid-in-liquid printing, testing of MOFs for dissolved CO2 capture, investigation