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, microfluidics, laboratory automation, and GPU computing infrastructure. The opportunity to develop AI methods and scientific software that are directly deployed on cutting-edge experimental platforms. Vacation
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developing a high-throughput single-cell analysis platform that combines microfluidics, advanced live-cell microscopy, and AI-based image analysis to study microbial consortia. You will drive the development
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to retention and reproducibility of the properties after self-assembly, which will require precise molecular engineering as well as size control of the nano-objects by resorting to microfluidic synthesis
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computing, microfluidics, tissue engineering and organon- a-chip microsystem devices. 4. Formalization of the applications: Applications are formalized through a request addressed to the Rector
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, biochemistry and microfluidics.•Background in bioinformatics, hands-on expertise with single-cell and/or spatial omics is a plus.•Proficiency in the English language is required, as well as good communication
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systems, including biomaterials, hydrogels, microfluidics or related approaches. Experience with mammalian epithelial models or advanced live-cell imaging approaches. Experience developing bespoke image
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-invasive targeted drug delivery to the brain. Our laboratory recently developed a novel focused ultrasound-mediated targeted drug delivery platform, published in Nature Communications (https://www.nature.com
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biology, or bioengineering with experience in endothelial cell models, microfluidic/flow systems, rodent models, and/or multiomics. Strong interest in translational research at the intersection
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to analyze RNA and protein targets under the supervision of senior staff. Assist with the development and testing of microfluidic workflows for ultrasensitive biomarker detection. Support the preparation
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of the team are structured around 3 research aeras: • Research Area 1: On-line analytical methods via microfluidic devices for the quantification of air pollutants; • Research Area 2: Off-line analysis methods