The University of Tokyo · Engineering
Professor Tiao Wang's research lab focuses on interdisciplinary studies at the intersection of biomedical engineering, microfluidics, and materials science. Key research directions include the development of microfluidic systems for precise microparticle manipulation in viscoelastic fluids, with applications in diagnostics and biomedicine, and the mechanical behavior of reinforced concrete structures, particularly the influence of flexural deformation on shear crack propagation. The lab also explores the antiviral properties of traditional Chinese medicine formulations, such as Gangting, using in vitro cell culture models. These diverse research areas reflect a strong emphasis on both fundamental mechanisms and practical applications in health and civil engineering.
Figures are computed from collected data and may differ slightly.
General education (GE) is a new fashion in Chinese university courses, as can be seen by the fact that a GE curriculum has been set in several high-ranking universities in China recently. These courses include knowledge of history, arts, science, society, law and medicine, etc., and require English as the bridge between Chinese cultures and English cultures. English departments (or schools) are responsible for introducing foreign civilization within the framework of GE, resulting in the increasi
Microfluidic microparticle manipulation is currently widely used in environmental, bio-chemical, and medical applications. Previously we proposed a straight microchannel with additional triangular cavity arrays to manipulate microparticles with inertial microfluidic forces, and experimentally explored the performances within different viscoelastic fluids. However, the mechanism remained poorly understood, which limited the exploration of the optimal design and standard operation strategies. In t
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