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-cell imaging and immunolabeling. These images will then be analyzed in 3D using automated methods. - Manipulate the physical constraints to which nuclei are subjected and compare transcriptional dynamics
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within the Solid-state Quantum Technologies team (S2QT – https://solidstatequantumtech-l2c.fr/ ) of the Charles Coulomb Laboratory in Montpellier. The doctoral work will be supervised by Vincent Jacques
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-Saclay region and is easily accessible by public transportation from Paris. More information is available at https://www.ip-paris.fr . The candidate will join the doctoral school of the Institut
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: inverted-microscope imaging, organic-matter localisation, X-ray tomography (CT-scan) before and after dissolution. • Design and run CaCO3 dissolution experiments: O2 flux and pH measurements using
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of algorithmic processing, and bias management. In the field of cultural heritage, the rapid democratization of image and 3D content generators has led to the widespread circulation of visually appealing
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of imaging, both in acquisition speed and imaging depth, for applications ranging from biological systems to nanomaterials. This research is inherently interdisciplinary, combining expertise in optics
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biology, genetics, single-cell and spatial transcriptomics, advanced imaging, and bioinformatics. The main objective will be to identify the gene networks involved in muscle morphogenesis, reconstruct
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Biology (LBDV) of Villefranche-sur-mer. The candidate will rely on the expertise of G. Facchini with problems of curvature-driven growth, and the characterisation of 3D complex structures in self-organised
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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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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