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approaches (optogenetics, Halo-tagged cell lines, TurboID), biochemistry, and live-cell imaging. The ideal candidate will hold a Master's degree in cell biology, biochemistry, or molecular biology, with a
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single-cell level in the moss Physcomitrium patens. The project will combine cutting-edge approaches in developmental genetics, live imaging, and single-cell genomics. Research environment : The RDP
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fibrosis; transcriptomic and imaging approaches (RNA-seq), high-content imaging (ImageStream), and metabolic profiling (Seahorse); recombinant protein engineering; structural biology techniques: X-ray
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), Biochemistry (production and purification of protein complexes), Structural biology (cryo-electron microscopy and image analysis). The final goal is to build a mechanistic model of substrate recruitment by
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. The institute offers a multidisciplinary environment that bridges fundamental discoveries with applied preclinical research. In partnership with IMATHERA (Preclinical Imaging and Radiotherapy Platform
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Information Eligibility criteria The candidate must: - Hold a PhD in microbiology or cell biology - Have significant experience in fluorescence microscopy: time-lapse, dynamic imaging, multi-channel, etc
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using imaging and behavior platforms at SPPIN. This project will allow the control of MeCP2 expression in order to optimize the efficacy of RTT gene therapy, while establishing a modular framework for
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and image processing. Prior experience with data fusion, machine learning, or super-resolution methods will be considered an asset. Candidates should be motivated to conduct independent scientific
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using laser diagnostics, including: Flow visualization via Particle Image Velocimetry (PIV) Flame structure imaging via OH Planar Laser-Induced Fluorescence (PLIF) Wall temperature measurements via Laser
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orbital character of electrons in the resulting spin-orbit torques. Activities: - magneto-transport in metallic and magnetic oxide heterostructures subjected to microwaves - magneto-optical imaging