Seoul National University · Agricultural and Biological Sciences
Professor Seunghwan Lee's research lab specializes in computational biomechanics and molecular systematics, focusing on the development of advanced musculoskeletal modeling and control systems for realistic human movement simulation, as well as the use of DNA barcoding and phylogenetic analysis to resolve species boundaries and evolutionary relationships in hemipteran insects such as aphids, whiteflies, and cimicoids. The lab integrates deep reinforcement learning, biomechanical simulation, and molecular genetics to address complex biological systems and ecological adaptations.
Figures are computed from collected data and may differ slightly.
This work presents a new approach for optimizing the carbonization conditions of polyacrylonitrile (PAN)-based fibers by tracing the microstructural changes during the carbonization process. Variations in the radial direction of the carbon fibers were also examined, emphasizing their correlation with temperature and duration. Changes in the outermost structure (surface) and radial heterogeneity were strongly correlated with tensile strength. Furthermore, the analysis focuses on structural change
Harrison's rule, that body size is positively correlated between parasites and hosts, has been reported in a range of taxa, but whether the rule is applicable to cleptoparasitic insects is poorly understood. Subfamily Nomadinae, the largest group of cleptoparasitic bees, usurp the nests of a variety of host bees. Within the subfamily, Nomada exploits the most diverse hosts, using at least ten genera from five families. Here, we reassess the phylogeny of Nomadinae, including the expanded sampling
Open papers in the app to read, cite, and organize with AI.