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Field
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by lentiviral and genome editing (e.g. CRISPR) methods Conduct qualitative and advanced quantitative fluorescence microscopy analyses Isolate proteins and assemblies from cancer cells for proteomic
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. Minimum Qualifications Ph.D. in Basic Science, Health Science, or a related field. No experience required. Preferred Qualifications Experience with advanced 3D imaging modalities (light sheet fluorescence
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on developing probabilistic latent-variable methods for large and structured biological data, with applications in genomics, spatial transcriptomics, and fluorescence imaging. High-dimensional and structured
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Lyon / CNRS ; Institut Fresnel, Marseille) aims to explore a novel approach involving the development of fluorescently encoded synthetic polymers and also DNA origamis, combined with an optical
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co-encapsulation, stability, and self-assembly using techniques such as fluorescence cross-correlation spectroscopy and small-angle X-ray scattering. Perform cell-based studies to investigate
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the synthesis of fluorescent and photochromic organic radicals to manufacture and trigger dual nanoassemblies, endowed with magnetic and optical activity, in the framework of on-command nanomedicine. Context
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protein-ligand interactions and protein-peptide interactions. The candidate will work in an interdisciplinary environment, combining experimental approaches (single molecule fluorescence and biochemistry
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; English communication skills, a statement in the CV. Specific Requirements work involving in master degree course, including mammalian cell culture, molecular biology, fluorescence/confocal microscopy
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and measurements (thorough knowledge); - Spectroscopy (fluorescence and colorimetry) (thorough knowledge); - Air Pollution; - English language: minimum level B1 (European framework) Knowledge
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project focuses on developing probabilistic latent-variable methods for large and structured biological data, with applications in genomics, spatial transcriptomics, and fluorescence imaging. High