Teruaki Ikeda
Papers
4
Total Citations
76
H-Index
3
About
Teruaki Ikeda is a researcher specializing in biological fluid mechanics and animal locomotion, with a particular focus on the aerodynamics and hydrodynamics of natural flapping flight and aquatic propulsion. His work bridges biomechanics and fluid dynamics to uncover how animals navigate complex, unsteady flow environments with remarkable efficiency. Ikeda's most influential contribution, "Measurement of time-varying kinematics of a dolphin in burst accelerating swimming" (2019, 36 citations), provides a detailed kinematic analysis of dolphin locomotion during rapid acceleration — a previously underexplored aspect of cetacean biomechanics. By capturing the temporal dynamics of successive fluke beats, his research advances understanding of thrust generation and energy expenditure in one of nature's most accomplished swimmers. Equally notable is his work on insect-scale flight in turbulent conditions. His studies on honeybees navigating directed gusts (2018, 34 citations) reveal how body attitude and passive stabilization mechanisms help small fliers maintain control in unpredictable aerial environments. Complementary research on the energetic penalties of flapping flight in unsteady airflows further illuminates the aerodynamic challenges facing both biological and bio-inspired micro air vehicles. Collectively, Ikeda's research offers foundational insights relevant to the design of next-generation biomimetic drones and underwater vehicles.
Research Focus
Key Achievements
Top Papers
- 1
- 2Bees with attitude: the effects of directed gusts on flight trajectories34 citations · 2018
- 3Added costs of insect-scale flapping flight in unsteady airflows3 citations · 2016
- 4Bees with attitude: the effect of gusts on flight dynamics3 citations · 2018