Dmitry A. Fedosov
Papers
4
Total Citations
293
H-Index
4
About
Dmitry A. Fedosov is a computational biophysicist whose research sits at the dynamic intersection of soft matter physics, biological systems, and active matter. His work has made significant contributions to understanding how self-propelled particles and active agents interact with and reshape flexible membrane structures, particularly lipid vesicles. His landmark 2020 study, "Active particles induce large shape deformations in giant lipid vesicles," has garnered over 220 citations, establishing him as a leading voice in the mechanics of active-matter-driven membrane deformation. This foundational work has been extended through investigations into non-equilibrium vesicle shapes and dynamics, revealing a rich landscape of emergent morphologies — from tethers to bola-like structures — driven by confined self-propelled particles. Fedosov also contributes to broader community efforts shaping the field's future direction, including the ambitious 2025 Motile Active Matter Roadmap. His growing interest in intelligent soft matter further reflects a forward-looking perspective, exploring how materials might one day exhibit adaptive, life-like behavior. Through rigorous simulation and theoretical insight, Fedosov's contributions are helping define how active forces govern biological and synthetic soft systems.
Research Focus
Key Achievements
Top Papers
- 1Active particles induce large shape deformations in giant lipid vesicles223 citations · 2020
- 2The 2025 motile active matter roadmap29 citations · 2025
- 3Non-equilibrium shapes and dynamics of active vesicles25 citations · 2022
- 4Intelligent soft matter: towards embodied intelligence16 citations · 2025