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experimental data in collaboration with clinicians from the Paris Eye Imaging group (Quinze-Vingts National Ophthalmology Hospital); Publish results in international peer-reviewed journals and present findings
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for the analysis of hyperspectral imaging data applied to pictorial layers, based on coupling physical radiative transfer models (two-flux and four-flux approaches) with machine learning methods. The researcher will
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skills in physics/optics, particularly in instrumental optics and physical optics - Knowledge in fluorescence microscopy and imaging of biological samples - Skills in optical alignment - Skills in control
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• Exploration of dielectric-based resonant and non-resonant nanophotonic architectures compatible with large-area fabrication • Demonstration of prototype metasurface devices combining optical selectivity
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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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Eligibility criteria - physics with knowledge in optics - knowledge in microscopy - knowledge in single-molecule imaging (acquisition and processing) - knowledge in photophysics - knowledge in cell culture
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• Exploration of dielectric-based resonant and non-resonant nanophotonic architectures compatible with large-area fabrication • Demonstration of prototype metasurface devices combining optical selectivity
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lie at the crossroads of multiple disciplines and involve expertise in optics, electronics, image and data processing (including machine learning), photophysics, chemistry and biology. The position is
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, culture, and genetic manipulation of mouse embryos; biophysical techniques such as high-resolution microscopy, optical tweezers, and microfluidics; as well as image and data analysis. The Institut Curie is
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, and analysis of multicolor images. - Advanced optical microscopy (nanoscopy) - Image acquisition and analysis - Microfluidics - Fluorescent labeling protocol - Multimodal characterization