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decide the fate of their RNAs - whether to translate, store, or degrade them. Using biochemical reconstitution, fluorescent labeling, and single-molecule imaging, you will explore how molecular machines
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Essential: Proficiency in fluorescence microscopy techniques (confocal, wide-field, live-cell); experience with microfluidic systems or single-cell analysis; strong background in image analysis; demonstrated
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; digital pathology; image post-processing and automated quantitative microscopy image analysis; sample preparation for high-throughput drug and siRNA screening; RNA isolation and sequencing; statistical
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a good team spirit are expected. Any experience in in vitro cell culture, RNA biology techniques, next-generation sequencing, fluorescent microscopy imaging, and involvement in studies
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decide the fate of their RNAs - whether to translate, store, or degrade them. Using biochemical reconstitution, fluorescent labeling, and single-molecule imaging, you will explore how molecular machines
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a good team spirit are expected. Any experience in in vitro cell culture, RNA biology techniques, next-generation sequencing, fluorescent microscopy imaging, and involvement in studies
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of research assistant professor (post-doc) to conduct scientific research within the research project: "Two-photon fluorescence lifetime ophthalmoscopy: new perspectives in the diagnosis of eye diseases