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  1. Troubleshooting Gait Disturbances in Parkinson’s Disease With Deep Brain Stimulation.Nicoló G. Pozzi, Chiara Palmisano, Martin M. Reich, Philip Capetian, Claudio Pacchetti, Jens Volkmann & Ioannis U. Isaias - 2022 - Frontiers in Human Neuroscience 16.
    Deep brain stimulation of the subthalamic nucleus or the globus pallidus is an established treatment for Parkinson’s disease that yields a marked and lasting improvement of motor symptoms. Yet, DBS benefit on gait disturbances in PD is still debated and can be a source of dissatisfaction and poor quality of life. Gait disturbances in PD encompass a variety of clinical manifestations and rely on different pathophysiological bases. While gait disturbances arising years after DBS surgery can be related to disease progression, (...)
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  • Analysis of Human Gait Using Hybrid EEG-fNIRS-Based BCI System: A Review.Haroon Khan, Noman Naseer, Anis Yazidi, Per Kristian Eide, Hafiz Wajahat Hassan & Peyman Mirtaheri - 2021 - Frontiers in Human Neuroscience 14.
    Human gait is a complex activity that requires high coordination between the central nervous system, the limb, and the musculoskeletal system. More research is needed to understand the latter coordination's complexity in designing better and more effective rehabilitation strategies for gait disorders. Electroencephalogram and functional near-infrared spectroscopy are among the most used technologies for monitoring brain activities due to portability, non-invasiveness, and relatively low cost compared to others. Fusing EEG and fNIRS is a well-known and established methodology proven to enhance (...)
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  • EEG-Based BCI Control Schemes for Lower-Limb Assistive-Robots.Madiha Tariq, Pavel M. Trivailo & Milan Simic - 2018 - Frontiers in Human Neuroscience 12.
    Over recent years, brain-computer interface (BCI) has emerged as an alternative communication system between the human brain and an output device. Deciphered intents, after detecting electrical signals from the human scalp, are translated into control commands used to operate external devices, computer displays and virtual objects in the real-time. BCI provides an augmentative communication by creating a muscle-free channel between the brain and the output devices, primarily for subjects having neuromotor disorders, or trauma to nervous system, notably spinal cord injuries (...)
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  • Deployment of Mobile EEG Technology in an Art Museum Setting: Evaluation of Signal Quality and Usability.Jesus G. Cruz-Garza, Justin A. Brantley, Sho Nakagome, Kimberly Kontson, Murad Megjhani, Dario Robleto & Jose L. Contreras-Vidal - 2017 - Frontiers in Human Neuroscience 11.
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  • Independent Component Analysis of Gait-Related Movement Artifact Recorded using EEG Electrodes during Treadmill Walking.Kristine L. Snyder, Julia E. Kline, Helen J. Huang & Daniel P. Ferris - 2015 - Frontiers in Human Neuroscience 9.
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  • Current State and Future Prospects of EEG and fNIRS in Robot-Assisted Gait Rehabilitation: A Brief Review.Alisa Berger, Fabian Horst, Sophia Müller, Fabian Steinberg & Michael Doppelmayr - 2019 - Frontiers in Human Neuroscience 13.
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  • Neural Correlates of Single- and Dual-Task Walking in the Real World.Sara Pizzamiglio, Usman Naeem, Hassan Abdalla & Duncan L. Turner - 2017 - Frontiers in Human Neuroscience 11.
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  • Brain Network Oscillations During Gait in Parkinson’s Disease.Doris D. Wang & Julia T. Choi - 2020 - Frontiers in Human Neuroscience 14.
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  • Bicycling and Walking are Associated with Different Cortical Oscillatory Dynamics.Lena Storzer, Markus Butz, Jan Hirschmann, Omid Abbasi, Maciej Gratkowski, Dietmar Saupe, Alfons Schnitzler & Sarang S. Dalal - 2016 - Frontiers in Human Neuroscience 10.
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