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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The candidate will develop cutting-edge imaging methods
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Infrastructure? No Offer Description Completing the characterization of the components (polycapillaries, X-ray tube, alignment device) of a LouComax prototype: MA-XRF coupled C-XRF Developing a C-XRF data
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, this research is motivated by applications in medical imaging, such as the precise segmentation of regions of an image. This work will take place at CEREMADE, Université Paris Dauphine PSL, in Paris 16th. It will
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tasks: Shaping research directions and producing results in one or more of the following topics: New primitives in public-key cryptography Fully homomorphic encryption and multilinear maps Public-key
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to meet them: scale-up + GMP production of organoids and tumoroids - Design of the optimized functional prototype - Incorporation of microbead counting and transfer functions - Validation and qualification
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and focusing performances, with the aim of getting down to a spot size of less than 50 µm for chemical imaging of biological tissues by mass spectrometry. Different strategies can be followed: 1
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of mechanical forces within the neuroepithelium of the embryonic spinal cord, using organoid models derived from human induced pluripotent stem cells. iPSC cell culture CRISPR-Cas Imaging Image analysis
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biological systems. The research will involve: Development and optimization of AFM techniques for high-resolution imaging and mechanical characterization of biological samples. Integration of AFM with
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imaging methods (e.g. multi-site photometry) in combination with polysomnography (EEG, EMG) and video monitoring. We will take advantage of newly developed genetically-encoded neurotransmitter indicators
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mechanoelectrical feedback, it requires specific tools to uncouple them and to decode the transformation of complex acoustic stimuli by the brain. In the lab, we are developing electrophysiological and imaging