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advanced cell imaging. The successful candidate will work in a highly interdisciplinary research environment and will have access to state-of-the-art technological platforms, including cleanroom
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, neurodegeneration, advanced microscopy, stem cell biology, and cell biology. The project will leverage state-of-the-art imaging facilities and established human iPSC-derived models of Alzheimer's disease. The work is
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cellular changes. Advanced imaging techniques, including structural and functional-MRI, developed by Dr. Emmanuel Barbier (GIN director), will be used to optimize rSynES and monitor neuronal changes over
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(materials, scenarios) - Translation of local knowledge into simulation rules - Facilitation or co-facilitation of model testing sessions - Collection of feedback for prototype iterations. Analysis and
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of the observed phenomena. Advanced image processing techniques will also be applied to analyse low-dose recorded images. Beyond ion irradiation, the project will explore how laser illumination and mechanical
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sources (in vivo imaging, in vitro experiments, correlation, and regression). In particular, magnetic resonance imaging (MRI) will be used both to construct the finite element model and to characterize
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at IP2I (LMA) and extreme adaptive optics (XAO) for exoplanet imaging at CRAL. This interdisciplinary initiative aims to develop a new generation of wavefront sensors capable of achieving sub-nanometric
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Perception and Action research team under the supervision of Dr Dollyane Muret. Experimental work will be carried out at the INCC BabyLab (https://babylab.incc-paris.fr/ ), a research facility dedicated to
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and Fabien Miomandre. Quantitative imaging of Photoinjected electrons triggered redox reactions Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR8531-VITBRA-006/Default.aspx
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD candidate will be recruited within IJCLab (http://ijclab.in2p3.fr