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unprecedented precision. - Procedures on rodents, such as: stereotactic brain surgery, cochlear injections, tissue sampling, tagging, etc. - Immunohistochemistry - Confocal imaging - Image analysis and 3D
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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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photolithography, 3D printing and multiphoton lithography, together with innovative biomaterials. These models will be used to investigate, through advanced microscopy and quantitative image analysis, how
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consist of 3d transitions metal (Fe, Co, Ni) supported on alumina or silica. The transition metal can be promoted by alkali metals (K, Cs). The transition metal is deposited on support through a simple
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partially available) for which the source characteristics and 3D displacement fields (including at the surface) are known. The student will analyze these datasets to determine the degree of complexity
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interfaces for hand gesture acquisition will be explored, including 2D (tablet) and 3D (accelerometer) movements. 2. Evaluation in a behavioural study: The Post Doctoral candidate will design experimental
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to contribute to cutting-edge research in flat optics, with applications in high-resolution imaging, 3D depth perception, and compact optical devices. Key objectives: 1. Design and Simulate Achromatic
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gesture acquisition will be explored, including 2D (tablet) and 3D (accelerometer) movements. 2. Evaluation in a behavioural study: The Post Doctoral candidate will design experimental protocols to evaluate