Papers
2
Total Citations
7
H-Index
2
About
M Pellet’s research lies at the intersection of biomechanics, neural control, and bio-inspired robotics, with a specific focus on the fractional-order modeling of skeletal muscle motor units. Their work provides a nuanced understanding of how muscle length—particularly in specialized muscles like the peroneus digiti quarti—affects the dynamic behavior of motor units, advancing the precision of multi-model simulations. By developing an S-type motor-unit fractional multi-model, Pellet has contributed to foundational knowledge that supports applications in functional electrical stimulation for muscle rehabilitation, as well as the design of more lifelike bio-inspired robotic systems. Though their most-cited papers have garnered modest citation counts (4 and 3, respectively), their work is notable for its technical rigor in a niche area, offering a bridge between physiological muscle mechanics and engineering. Pellet’s research underscores the potential for inverted muscle models to enhance both medical therapies and robotic actuation, marking them as a dedicated contributor to the growing field of neuromuscular modeling.
Research Focus
Key Achievements
Top Papers
- 1
- 2