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Explores GRIN optics fabrication using 2-photon polymerization and direct ink writing techniques, showcasing tunability in 3D printing and multi-material approaches.
Covers the formation and applications of organoids, including brain, skin, and intestinal organoids, as well as the engineering of tissues and the concept of organ-on-a-chip.
Explores microfluidic cell trapping, array technologies, and immunocapture methods for single cells, highlighting the importance of studying individual cell behavior.
Explores micromoulding technologies for polymer microfabrication, covering techniques like casting, injection molding, and hot embossing, along with surface treatments and advanced bonding methods.
Introduces BioMEMS, covering applications like DNA separation, protein analysis, and neuroelectronic implants, along with key numbers in biology and challenges in system integration.
Explores the formation, manipulation, and encapsulation of droplets in microfluidic systems, highlighting the role of surfactants and different techniques for droplet control.