Papers
6
Total Citations
163
H-Index
4
About
Matthieu Fruchard is a leading researcher in the control and navigation of magnetically guided microrobots for minimally invasive medical interventions, particularly within the cardiovascular system. His work focuses on overcoming the fundamental challenges of steering therapeutic microrobots through complex, dynamic biological environments, such as blood vessels with pulsatile flow. Fruchard’s major contributions include pioneering nonlinear model-based control strategies and observer-based controllers that compensate for unmeasurable forces like nonlinear drag, enabling precise trajectory tracking. His highly cited 2011 paper (99 citations) on endovascular magnetically guided robots established a foundational framework for optimizing navigation models. He has also advanced the field of underactuated multi-agent microrobotic systems, addressing the critical problem of controlling multiple robots with a single magnetic field input—a key step toward targeted therapy and biosensing. With over 160 total citations, Fruchard’s research bridges theoretical control engineering and practical biomedical applications, offering innovative solutions for drug delivery, chemotherapy, and other minimally invasive procedures.
Research Focus
Key Achievements
Top Papers
- 1
- 22D Observer-Based Control of a Vascular Microrobot40 citations · 2016
- 3
- 4Optimal trajectory for a microrobot navigating in blood vessels7 citations · 2010
- 5Observer-based controller for microrobot in pulsatile blood flow4 citations · 2014
- 6Output Feedback Synthesis for a Two-Agent Nonlinear Microrobotic System2 citations · 2019