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-resolution live-cell imaging and quantitative microscopy to dissect these mechanisms at the molecular level. We are offering a 6-month full-time internship for a highly motivated second-year Master’s student
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, IRCAN, ISA). His/her group will leverage large-scale, high-dimensional datasets—such as genomics, transcriptomics, proteomics, imaging, or single-cell data—to uncover fundamental biological mechanisms. We
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of data, especially heterogenous data made of several data types (continuous, texts, images, times series, networks, …). For example, social and communication networks allow users to interact through text
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the model to be trained. Access to this imaging has already been anticipated through the Health Data Warehouse (AAP Entrepôt de Données de Santé EDS 2023) via the “FraCTures” project, allowing
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insights into scale-up and process feasibility across collaborative initiatives. Train and supervise junior engineers, technicians, PhD students, Postdocs, and interns in process development and safety. Is
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ability to work in a cooperative, multi-cultural and multi-disciplinary environment. Dynamism, self-organization, autonomy and drive. Interest for computing biology (R programming, image analysis) will be
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. Interest for computing biology (R programming, image analysis) will be an additional asset. Contact & applications: Applications should be sent to pierre.guermonprez@pasteur.fr ; julie.helft@inserm.fr
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as well as medical image analysis . The iBV is supported by the University Côte d’Azur, the CNRS and the Inserm. It is affiliated to the School of Life & Health Sciences (EUR Life ) and participates
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friction models. Integrating Experimental Data: Collaborate with experimental teams to incorporate data from calcium imaging, confocal microscopy, and high-resolution video recordings. Use experimental data
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: micromagnetic simulation, conversion of theoretical data into experimental contrast and acquisition of experimental images. The work will be carried out by three teams: theory/simulation, spin textures within