Steffen Leonhardt
RWTH Aachen University, Philips (Germany), Philips (United Kingdom), Westfälische Hochschule
Papers
21
Total Citations
1,709
H-Index
12
About
Steffen Leonhardt is a prominent researcher in rehabilitation robotics, assistive technologies, and human-machine interaction, whose work has significantly advanced the development of intelligent devices for physical rehabilitation. He is perhaps best known for his sweeping 2014 survey on robotic devices for upper limb rehabilitation, which has garnered over 1,170 citations and remains a foundational reference in the field, reflecting both the breadth of his expertise and the urgency of addressing therapist shortages worldwide. Leonhardt's research spans variable stiffness and impedance-controlled actuators, lower limb exoskeletons, and bioinspired robotic manipulators, with a consistent focus on safe, adaptive human-robot interaction. His contributions to compliant actuator design and cooperative control strategies for lower limb exoskeletons have helped shape modern rehabilitation engineering, enabling devices that intelligently respond to a patient's movement intentions. He has also pioneered multimodal sensing approaches, combining electromyography and electrical impedance myography to more accurately detect muscle activity during robotic-assisted therapy. With his work on spasticity detection using body-worn sensors and biomechanical overviews of power-augmentation exoskeletons, Leonhardt bridges clinical needs and engineering innovation. His cumulative citation record underscores his lasting influence on both the research community and the future of personalized, technology-driven rehabilitation care.
Research Focus
Key Achievements
Top Papers
- 1A survey on robotic devices for upper limb rehabilitation1,178 citations · 2014
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- 4Design and control of a mechanical rotary variable impedance actuator61 citations · 2016
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- 8Body-Sensor-Network-Based Spasticity Detection31 citations · 2015
- 9Lower-Limb Exoskeleton With Compliant Actuators: Human Cooperative Control29 citations · 2023
- 10Closed-loop positive real optimal control of variable stiffness actuators20 citations · 2018