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of lab-on-a-chip and microfluidic devices. • Development and implementation of a microfluidic platforms to study cell-to-cell and organoid-to-organoid cross-talk. • Implementation of quantitative and
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: • Design and fabrication of a microfluidic device mimicking the tumor microenvironment using 3D printing and bioprinting • Characterization of the blood and lymph barriers on chip • Establishment of chemical
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experience within the field of microchip based acoustofluidics documented experience of COMSOL-modelling within fluid mechanics, acoustofluidics and microfluidics documented experience of acoustofluidic based
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disease mechanisms and gain new insights into pathophysiology. Designing and applying advanced bioengineering tools, such as lab-on-a-chip and microfluidic devices, to study neuronal networks and model
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reproducible sample preparation method for cryogenic electron microscopy (cryo-EM). You will fabricate microfluidic mechanical probes with phase guides, develop controlled dispensing of femto-liter volume
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Delft, and CryoSilico cryo-EM sample supports from DENS solutions to develop a novel reproducible sample preparation method for cryogenic electron microscopy (cryo-EM). You will fabricate microfluidic
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/ or editor for international journals in bioengineering/oncology. Multidisciplinary expertise combining cancer bioengineering, tissue engineering, biomaterials, microfluidics, nanomedicine, and
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from state-of-the-art microfluidic lymph node on-a-chip systems used to study infection initiation and immune response. The postdoc will be co-mentored by an interdisciplinary team of biologists and
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in iron and sulfur geochemistry. Experience with flow NMR, microfluidics, or continuous-flow chemical systems. Experience with organic synthesis. Has taught and/or mentored students and junior
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tools in heat and mass transfer, microfluidics, thermodynamics, bioengineering, micro/nanotechnology, and computational modeling. We are passionate about developing novel translational platform