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of microscopy company Oxford Nanoimaging ( https://oni.bio/ ). The group is located in the new Kavli Institute for Nanoscience Discovery ( https://kavlinano.ox.ac.uk/ ), a vibrant environment for
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discovery and basic research to clinical translation. The postdoc fellow will be part of the Organs-on-Chip Technologies Lab (Prof. O. Guenat), which integrates microfluidic engineering with advanced cell
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investigations of (bio)carbonation and process development (scale-up) from microfluidics to pilot scale and on (ii) the CO2 (bio)valorization of iron-bearing materials to carbonates along with energy production
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(https://oni.bio/ ). The group is located in the new Kavli Institute for Nanoscience Discovery (https://kavlinano.ox.ac.uk/ ), a vibrant environment for interdisciplinary research at the interface
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microfluidic devices. The position will follow the guidelines outlined below. For more details about our group, please refer to the following webpage. https://www.oist.jp/research/buribushi/yokoyama [Work
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Agenda funded by the PRR framework. The candidate will contribute to the development of protocols for bioanalyte concentration and detection using optical sensors, microfluidic devices, and magnetic-based
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and guidance system for these micro-swimmers, interacting with real-time optical visualization in a microfluidic network. • Study of the fidelity of the movement of micro-swimmers to the set trajectory
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for synthesis. A postdoctoral position is available for 3-years to work with Professor Florian Hollfelder at the Biochemistry Department of Cambridge University (https://hollfelder.bioc.cam.ac.uk/ ). The project
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, bioscience, molecular biology or a related field. Candidates should have extensive experience of working with microfluidic chips, mammalian cell culture and advanced imaging techniques. More information on our
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
organize data as a member of a multidisciplinary biomedical engineering team. This role will involve the generation and maintenance of cells for immune-competent microfluidic organs-on-chip and will involve