Maryam Montazeri
Papers
1
Total Citations
12
H-Index
1
About
Maryam Montazeri is a researcher at the forefront of biomedical control systems, specializing in the application of advanced nonlinear control strategies for functional electrical stimulation (FES) and rehabilitation robotics. Her work focuses on restoring coordinated movement in individuals with neurological impairments, particularly through the synergistic control of hip and knee joints. In her most-cited paper, "Fast adaptive fuzzy terminal sliding mode control of synergistic movement of the hip and knee joints (air-stepping) using functional electrical stimulation: A simulation study" (2021), she introduced a novel control framework that combines fuzzy logic with sliding mode techniques to achieve robust, adaptive regulation of FES-induced muscle activation. This approach addresses critical challenges in FES, such as muscle fatigue and nonlinear dynamics, enabling smoother and more precise air-stepping motions. With 12 citations to this work, Montazeri’s contributions are gaining recognition for their potential to enhance the efficacy of neuroprosthetic devices and rehabilitation therapies. Her research bridges theoretical control engineering and practical clinical applications, offering promising pathways for improving mobility and quality of life in patients with spinal cord injuries or stroke.
Research Focus
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Top Papers
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