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- l'institut du thorax, INSERM, CNRS, Nantes Université
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, the candidate will address how mRNA translation contributes to germ granule biphasic architecture and biophysical properties. - Drosophila genetics - Molecular biology - Advanced imaging (super-resolution, single
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performance. The impact of this process will be investigated, considering its impact on the compressibility and transfer properties of the mixtures. Successful candidate will engage in interdisciplinary
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will integrate multimodal data: imaging, signals, Omics, clinical, and contribute to analyses for risk prediction. # Experimentation & imaging You implement acquisitions (optical mapping, micro-CT
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, at the forefront of neuroscience research, has access to a high-tech brain imaging platform, enabling it to explore the brain mechanisms underlying human decisions. The research team focuses on the neuroscience
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chloride imaging in cultured hippocampal neurons - Validate 2–3 preselected candidate proteins in vitro and in an in vivo epilepsy model - Neuroscience laboratory - L2 facility, microscopy room Where
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of current observations, both in terms of acquisition speed and imaging depth, for applications ranging from biology to the study of nanomaterials. These developments lie at the crossroads of several
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. The inventory is still ongoing, but our field is now heavily investing in the characterization of the physical and chemical properties of these objects through the use of sensitive imaging cameras and
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microtubule nucleation is regulated in the context of neuronal development within Drosophila. The recruited postdoctoral fellow will use powerful genetics and advanced cell imaging of neurons in situ
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) using different imaging modes and TEM analysis. - Implementation of advanced techniques such as 4D-STEM and DPC ((Differential phase Contrast) - Acquisition of angle-resolved electronic energy loss maps
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to detect, image, and analyze ferroelectric domains in 2D ferroelectric heterostructures. You will employ advanced cryogenic micro-spectroscopy, and reflection contrast imaging to visualize domain structures