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of Biomedical Engineering, please visit https://www.bme.ubc.ca/ . A Research Assistant/Technician position for developing molecular tools and techniques in high-throughput enzyme characterization is available in
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integrate robust sensor solutions with microfluidic, fluidics, and electronics. Collaborate with international multidisciplinary teams with expertise in micro- and nanoplastics, Raman sensors, microsystems
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Biotechnology, and a Master’s degree in the field of Health Sciences and Biomedical Engineering. Tasks to be performed: Traditional cell culture and cell culture in microfluidic devices Validation of the blood
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adipose tissue and pancreatic islets using a microfluidic multiorgan-on-chip 1) Funding: The PhD project is funded by the ANR PRC ISADIPO (ANR-25-CE14-7667), coordinated by M. Raoux, group leader
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SINTEF. The project aims to develop an automated high-throughput platform for physiologically relevant cell research by combining robotics, microfluidics, advanced sensors, cloud-connected software, and
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and metabolic interactions with mammalian cells. Possible project elements include: Microfluidic synthesis of polymer capsules and microgels Encapsulation of enzymatic reaction networks, metabolic
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specified in the Annex to NCN Council Resolution No 23/2024 of 4 March 2024, https://www.ncn.gov.pl/sites/default/files/pliki/uchwaly-rady/2024/uchwala23_2024-zal1.pdf#page=45 . A doctoral degree in biology
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. Experience with thermal and spectroscopic characterization techniques, particularly DSC and FTIR. Experience with intracellular delivery methods (e.g., electroporation or comparable microfluidic poration
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, focusing on personalized monitoring, diagnostics, and treatment. Relevant expertise includes wearable sensors, organoids, microfluidics, advanced imaging, biomedical microsystems, and AI-based analytics
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continued progress in our effort to investigate tissue engineering, cell culture, materials science, microfluidics, vasculature, and soft-matter characterization, including investigations of process-structure