Alexander Alexeev
Georgia Institute of Technology, Universidad Autónoma de Ciudad Juárez
Papers
3
Total Citations
45
H-Index
3
About
Alexander Alexeev is a researcher whose work bridges the frontiers of biomechanics, fluid dynamics, and human-robot interaction. His key research areas include blood clot mechanics, bio-inspired propulsion, and gesture recognition technologies. Alexeev’s most notable contribution is his study on platelet heterogeneity, demonstrating how variations in platelet contractility enhance blood clot volumetric contraction—a phenomenon he terms “asynchrono-mechanical amplification.” This work, published in 2021 with 26 citations, provides critical insights into thrombosis and hemostasis. In fluid dynamics, Alexeev employs fluid–structure interaction computational modeling to investigate oscillating elastic propulsors with tapered thickness, revealing that thickness tapering creates an acoustic black hole effect that improves hydrodynamic performance at Reynolds number 2000. This 2022 paper has garnered 15 citations and holds promise for designing more efficient underwater vehicles. Additionally, Alexeev has contributed to robotics with an overview of Kinect-based gesture recognition methods (2024, 4 citations), highlighting the enduring utility of visual sensors in robotic systems. His work exemplifies how computational modeling and biological principles can drive innovation in medicine, engineering, and robotics.
Research Focus
Key Achievements
Top Papers
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- 3An Overview of Kinect Based Gesture Recognition Methods4 citations · 2024