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knowledge of microfluidic automation, including actuators like pumps, valves, and electromagnetic components, along with heat transfer concepts. Familiarity with 3D printing or other rapid prototyping methods
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, Salmo salar L., in Tasmania. Journal of Fish Diseases 22: 433-443. https://doi.org/10.1046/j.1365-2761.1999.00175.x Rodger H (2013) Amoebic gill disease (AGD) in farmed salmon (Salmo salar) in Europe
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periods. b) Relevant experience in the development of 3D in vitro models and technologies based on microfluidics and nanomedicine for application in cancer research. 5. Formalization of the applications
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fluorescence microscopy. Experience in 3D modeling (e.g., SOLIDWORKS), fabrication of biotechnological devices, and microfluidics for organ-on-chip development. d) Experience in transcriptomic, proteomic, and
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studies and post-doctoral periods. b) Relevant experience in the area of biomaterials and biofabrication of microphysiological models based on 3D bioprinting and microfluidics for cardiovascular
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cell models and in molecular and biochemical characterization techniques (qPCR, western blotting, immunocytochemistry, ELISA). Research experience in cancer and microfluidics will be valued. 5
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manipulation in microfluidic environments Design and implement reinforcement learning algorithms for control and manipulation, first in simulation and later on real experimental setups Refine a real-time
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their commitment towards either pro- or anti-inflammatory cells within a microfluidic system integration. This innovative model will provide first insights into bioelectric regulation of inflammatory cells, opening
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. Education & Experience (Desired): Previous lab experience with some of the following techniques would be advantageous: Microfabrication and/or microfluidics, device assembly and prototyping, mammalian cell
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stress, e.g. through mechanical agitation or by applying shear forces in microfluidic devices, and will investigate how this impacts phase separation and aggregation of TDP-43, FUS or TAF15 in vitro. We