Explores microfluidic cell trapping, array technologies, and immunocapture methods for single cells, highlighting the importance of studying individual cell behavior.
Explores the fundamentals of diffusion in microfluidics, covering diffusion processes, self-diffusion of biological entities, diffusion coefficients, and mixing techniques.
Delves into the emerging applications and opportunities in large area electronic materials, including solar cells, flat panel displays, memories, and transient electronics.
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.