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Analysis and Architecture (LAAS) within the MechaBioFluidics team, which has extensive expertise in microfluidics and microfabrication (a technology platform of the national ReNaTech network), both located
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science. Project description (DC10 – CNR-IFN) Project title: Design and Micromachining of Microfluidic Devices for Chiral Sensing Applications (WP3) DC10 aims to develop next-generation lab-on-a-chip
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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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-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable the development of highly predictive and human-relevant biomedical models
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combines microfluidics, bubble physics, and ultrasound signal processing to bring nanobubble imaging closer to clinical use. You will collaborate closely with a fellow PhD candidate, a postdoc, and a
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the interface of microfluidics, nanomedicine, antimicrobial delivery, and infectious disease Access to advanced instrumentation and collaborative expertise across Purdue and external partners In
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ELiA (Engineering for Life Sciences and Applications) research team at LAAS-CNRS, which specializes in the development of microphysiological systems, microfluidics, hydrogel photopatterning, and the
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sensors. The architecture integrates (i) an ultra-low form factor microfluidic separation module and (ii) a multi-modal SiC sensor for precise analyte identification. The seamless integration of a
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of advanced nanomaterial synthesis equipment and microfluidic systems, as well as for the preparation, characterisation and optimisation of nanotechnological formulations and the encapsulation of biomolecules
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the future of health and life sciences. By integrating stem cell biology, patient-derived material, tissue engineering, microfluidics, advanced analytics, and digital technologies, NAM platforms enable