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to predict the performance of biosensors. Microfluidic platforms are ideal for simulating realistic environmental situations. Despite advances in microfluidics for environmental sensing, whole-cell
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of the SERS monitoring methodology in microfluidic cells (M1-M3), Proof of concept of the monitoring of the catalysis by SERS (M4-M6), Determination of the influence of experimental conditions on plasmon
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of advanced nanomaterial synthesis equipment and microfluidic systems, as well as for the preparation, characterisation and optimisation of nanotechnological formulations and the encapsulation of biomolecules
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impedance sensing (ECIS) and transepithelial electrical resistance (TEER) measurements to assess the integrity and functionality of the epithelial barrier within microfluidic devices; Developing, implementing
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of physiologically relevant models, including spheroids, organoids and tissue-engineered constructs, with opportunities to work with microfluidic/organ-on-a-chip systems and bioprinted models. A central component of
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Researcher in experimental soft matter physics. Specifically, the candidate will set up microfluidic triple-phase flows with a liquid crystal elastomer (LCE) precursor as middle phase which is flown either as
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CoE (https://www.med.uio.no/hth/english/ ) is inviting applications for a three‑year PhD position. The recruited candidate will take part in UiO Emerging Technologies Initiative Project FTI-NAM. NAM
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interdisciplinary team of biologists and engineers to leverage in vitro organ-on-a-chip (Organ Chip) microfluidic culture systems and injectable formulations to study and model adaptive immunity in female
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. The post holder will work with the Bakshi Lab's single-cell phage infection platform (https://www.bakshilab.net/ ) and an interdisciplinary team spanning microbiology, engineering and quantitative
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of biologists and engineers to leverage in vitro organ-on-a-chip (Organ Chip) microfluidic culture systems to study and model and compare adaptive immunity and radiation toxicity in non-human primate and humans