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technology. Develop and characterize cellulose-based biomaterials for cartilage tissue engineering. Integration of 3D engineered tissues with paper-based microfluidic devices to perform in-line monitoring of
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
organ-on-chip platforms for evaluation of antibody drug conjugate pharmacokinetics and safety. Fundamental to this work, the fellow will be skilled at mammalian cell culture; microfluidic device
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 3 months ago
of the variability of physiological and cell division processes. The development of the BRP framework will entail modelling, analysis, and inference, and will exploit microfluidics experiments comprising single-cell
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100%, Basel, fixed-term We, the ETH Zurich Bioprocess Laboratory (Prof. Sven Panke), are a multinational (currently 8 different nationalities) and interdisciplinary (synthetic biology, microfluidics
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microbiology research integrated with microfluidics (website: http://nanobio.tamu.edu.) The project will be highly interdisciplinary and fast-paced, having multiple collaborating labs in environmental
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scientists from diverse disciplines and life experiences to creatively address critical questions for today's world. Learn more at https://biology.stanford.edu/ POSTION SUMMARY: The Yan Lab at Stanford Biology
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scientists from diverse disciplines and life experiences to creatively address critical questions for today’s world. Learn more at https://biology.stanford.edu/ POSTION SUMMARY: The Yan Lab at Stanford Biology
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selection tender of at least 5 years, including experience acquired during the doctoral studies and post-doctoral periods. b) Relevant experience in the development of 3D in vitro models and microfluidics
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and magnetic fields, ultrasound, optics and targeted radiation, microfluidics, controlled force sensing and actuation and related tools for probing and controlling biomolecular systems, cells, and
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more about them. The project will be carried out in cooperation with the University of Warsaw, with the team of Dr. T. Kamiński, an expert in microfluidics, and the Jagiellonian University, with the team