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Code 9546 Employee Class Acad Prof and Admin Add to My Favorite Jobs Email this Job About the Job The Yang research lab at the University of Minnesota is looking for a postdoc with microfluidic expertise
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preference of positions should be sent to: amber@linxs.se THIS PROJECT: Development of microfluidics on the CoSAXS beamline. Small-angle X-ray scattering (SAXS) combined with microfluidics has emerged as a
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Postdoctoral position: Developing a human lymphoid organ-on-chip to evaluate candidate mRNA vaccines
. To address this issue, we developed a lymphoid organ-on-chip (LO chip) model based on a microfluidic chip seeded with human PBMC at high density within a 3D matrix. Perfusion of the SARS-CoV-2 Spike
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for the parallelized monitoring of metabolites and environmental parameters to assess organoid- and assembloid formation Developing microfluidic chips that enable the multi parameter measurements of key molecular and
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of complex cell sorting protocols, integrating advanced technologies such as flow cytometry and microfluidics to enhance precision and throughput. The Fellow will design and conduct experiments in molecular
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establish and validate microfluidic co-culture systems using human glomerular cells and benchmark these platforms against human kidney multi-omic and spatial datasets. These systems will be further developed
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., for quantum computing, microfluidics, or conventional circuits and systems. Our focus on interdisciplinary partnerships and networks will enable you to meet many interesting people (at places all over the world
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Job Purpose You will contribute to a project focused on developing advanced microfluidic platforms for high throughput screening and sorting of cells or droplets. The platform will consist
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microfluidics channels experimentally. The particle dynamics under solute concentration gradient will be analyzed and new methods of manipulating particles in complex geometries will be developed. Application
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Postdoctoral researcher position. Mechanobiology in bioengineered neurodevelopment. Laboratory of...
is highly interdisciplinary, seeking to establish a fundamental understanding of neurodevelopmental mechanisms while generating novel technologies and experimental tools (eg. microfluidics, synthetic