Scheidl MA, Akarsu İB, Mehrkens F, Czierlinski B, Castellini C (2025)
Publication Language: English
Publication Type: Conference contribution
Publication year: 2025
Publisher: Springer
Series: Biosystems and Biorobotics
City/Town: Cham
Book Volume: 31
Pages Range: 279-283
Conference Proceedings Title: Converging Clinical and Engineering Research on Neurorehabilitation V. Proceedings of the 6th International Conference on Neurorehabilitation (ICNR 2024), November 5–8, 2024, La Granja, Spain - Volume 1
ISBN: 978-3-031-77587-1
DOI: 10.1007/978-3-031-77588-8_55
This work presents a study investigating the use of an impedance-controlled knee orthosis to assist with sit-to-stand transitions by leveraging EMG signals. A modified knee orthosis equipped with an electric actuator and an EMG bracelet enabled EMG-based impedance control. The results show altered velocity peaks with assistive support, indicating less strenuous movement. Further, EMG muscle activity was reduced significantly, suggesting lower physical effort required for the task. These findings demonstrate the potential of smart orthoses to optimize energy efficiency and enhance rehabilitation outcomes by dynamically adjusting joint impedance based on EMG activity.
APA:
Scheidl, M.-A., Akarsu, İ.B., Mehrkens, F., Czierlinski, B., & Castellini, C. (2025). An Impedance-Controlled Knee Orthosis for Assisted Sit-to-Stand. In Jose L. Pons, Jesus Tornero, Metin Akay (Eds.), Converging Clinical and Engineering Research on Neurorehabilitation V. Proceedings of the 6th International Conference on Neurorehabilitation (ICNR 2024), November 5–8, 2024, La Granja, Spain - Volume 1 (pp. 279-283). La Granja, ES: Cham: Springer.
MLA:
Scheidl, Marc-Anton, et al. "An Impedance-Controlled Knee Orthosis for Assisted Sit-to-Stand." Proceedings of the 6th International Conference on Neurorehabilitation (ICNR 2024), La Granja Ed. Jose L. Pons, Jesus Tornero, Metin Akay, Cham: Springer, 2025. 279-283.
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