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Join Dr. Hugo Salmon from Université Paris Cité as he takes us inside his cutting-edge work in microfluidics, from myelin-on-chip models to breakthroughs in nanomedicine. He shares how he’s using Elveflow technology to downscale AF4 systems—making them more affordable, efficient, and sustainable. He also highlights why thermoplastics, like styrenic block copolymers, are game-changers for industrial prototyping and cell culture. ✨ Thanks to Dr. Salmon for his trust and inspiring research—pushing microfluidics beyond today’s limits. We can't wait to see what’s coming next! Let's have a look : https://dev.elveflow.com/blog/thermop... #Microfluidics #AF4 #Elveflow #BiomedicalInnovation #labonchip 00:00 Introduction 00:13 Can you introduce yourself? 00:50 Can you describe your lab position and its main focus? 01:49 Regarding microfluidic material, what is the link between those two projects? 02:43 Can you walk us throught a specific experiment where you use Elveflow's technology? 03:22 Can you tell us more about AF4, and what are the drawbacks that you are trying to overcome with microfluidics? 04:31 Which features of the Elveflow's instruments caught your attention? 04:54 What is the best material for microfluidic chips design? 05:39 Can you tell us more about the polymer you have been working with ? 06:19 What are the advantages of Thermoplastic over PDMS? 07:09 Did you come across any misconception about microfluidics in the research community? 07:52 What advice would you give to a new researcher willing to work in the microfluidics field? 08:29 What are the major challengers that microfluidics still needs to overcome? 08:55 What role could microfluidics play in research in the future? 09:39 Outro