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biology, cell biology, molecular biology, genetics or a related field; • Strong experience in transcriptomics and bioinformatic analysis, preferably single-cell RNA sequencing; • Interest in developmental
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, cloning, sequencing, etc.) Microbiology (growth, transformation, conjugation in cyanobacteria, etc.) Enzyme extraction and purification; activity assay. Drafting of protocols and procedures. The researcher
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beenpreviously subjected, in laboratory, to different sequences of pulses and diffusion and quenching. In situ HEXRD experiments at synchrotron beamlines will be done on a last diffusion stage. Additionally, a
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intestinal colonization by commensal or pathogenic bacteria. - Analyze bacterial and cellular responses using techniques such as molecular biology (PCR, qPCR, sequencing), cell biology (flow cytometry
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Drosophila and/or mouse models. • Prepare and analyze samples for single-cell and/or single-nucleus sequencing approaches. • Participate in the development and use of 3D spatial transcriptomics approaches
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or organic deposits. • Adapt field strategy to complex sequences, especially the pre-architectural deposits and combustion features in SD4, while preserving comparability between excavation sectors. Team
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, ensuring consistency with JRC datasets and alignment with EU Missions and Partnerships (e.g. Water4All, Biodiversa+). By integrating EO-derived outputs with in situ observations, biodiversity indicators, and
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-ICP-MS analyses) - DNA extraction and amplification for sequencing and identification of microorganisms - presentation of results at an international conference - writing of an article in
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the massive contrast combinations present in an image or sequence of images (panoramic or otherwise). These contrast combinations are encoded and stored in a vector of just 15,000 bits (Gattaux et al., 2025
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in the team include a vicon-instrumented indoor room for experiments with multiple quadrotors, four manipulator arms (two 6-dof industrial manipulators, and two 7-dof torque-controlled manipulators