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Review

Review of devices used in neuromuscular electrical stimulation for stroke rehabilitation

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Pages 207-213 | Published online: 24 Aug 2017

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Bastien Moineau, Matthew Myers, Saima Shaheen Ali, Milos R. Popovic & Sander L. Hitzig. (2021) End-user and clinician perspectives on the viability of wearable functional electrical stimulation garments after stroke and spinal cord injury. Disability and Rehabilitation: Assistive Technology 16:3, pages 241-250.
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Articles from other publishers (45)

Peng SANG, Jiahui ZHAO, Hui YANG, Shun WANG & Xuexin SONG. (2023) Effect of traditional Chinese medicine combined with neuromuscular joint promotion in the treatment of limb dysfunction in stroke patients with soft paralysis. Minerva Surgery 78:2.
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Bo Sheng, Jianyu Zhao, Yanxin Zhang, Shengquan Xie & Jing Tao. (2023) Commercial device-based hand rehabilitation systems for stroke patients: State of the art and future prospects. Heliyon 9:3, pages e13588.
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Athanasios Chasiotis, Vasileios Giannopapas, Marianna Papadopoulou, Maria Chondrogianni, Dimitrios Stasinopoulos, Sotirios Giannopoulos & Daphne Bakalidou. (2022) The Effect of Neuromuscular Electrical Nerve Stimulation in the Management of Post-stroke Spasticity: A Scoping Review. Cureus.
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Eleni Aikaterini Ntakou, Grigorios Nasios, Anastasia Nousia, Vasileios Siokas, Lambros Messinis & Efthimios Dardiotis. (2022) Targeting Cerebellum with Non-Invasive Transcranial Magnetic or Current Stimulation after Cerebral Hemispheric Stroke—Insights for Corticocerebellar Network Reorganization: A Comprehensive Review. Healthcare 10:12, pages 2401.
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Nathan Dunkelberger, Jeffrey Berning, Kevin J. Dix, Samuel A. Ramirez & Marcia K. O'Malley. (2022) Design, Characterization, and Dynamic Simulation of the MAHI Open Exoskeleton Upper Limb Robot. IEEE/ASME Transactions on Mechatronics 27:4, pages 1829-1836.
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Fengrui Ji, Shiyin Qiu, Yuan Liu, Jinze Wei, Yujian Zhang & Dong Ming. (2022) A Trajectory-Adaptive Walking Assistance Strategy Based on Functional Electrical Stimulation for Exoskeleton to Help Stroke Patients Restore Natural Gait. A Trajectory-Adaptive Walking Assistance Strategy Based on Functional Electrical Stimulation for Exoskeleton to Help Stroke Patients Restore Natural Gait.
Thiwat Udomlertsirikul & Yodchanan Wongsawat. (2022) Multi-Purpose Power Amplifier Board for Custom-Designed Electrical Stimulation System Development. Multi-Purpose Power Amplifier Board for Custom-Designed Electrical Stimulation System Development.
Mei-Sean Loh, Yi-Chun Kuan, Chin-Wen Wu, Chun-De Liao, Jia-Pei Hong & Hung-Chou Chen. (2022) Upper Extremity Contralaterally Controlled Functional Electrical Stimulation Versus Neuromuscular Electrical Stimulation in Post-Stroke Individuals: A Meta-Analysis of Randomized Controlled Trials. Neurorehabilitation and Neural Repair 36:7, pages 472-482.
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Maria Munoz-Novoa, Morten B. Kristoffersen, Katharina S. Sunnerhagen, Autumn Naber, Margit Alt Murphy & Max Ortiz-Catalan. (2022) Upper Limb Stroke Rehabilitation Using Surface Electromyography: A Systematic Review and Meta-Analysis. Frontiers in Human Neuroscience 16.
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Maryam Balke, Marc Teschler, Hendrik Schäfer, Pantea Pape, Frank C. Mooren & Boris Schmitz. (2022) Therapeutic Potential of Electromyostimulation (EMS) in Critically Ill Patients—A Systematic Review. Frontiers in Physiology 13.
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Tiago Coelho-Magalhães, Emerson Fachin-Martins, Andressa Silva, Christine Azevedo Coste & Henrique Resende-Martins. (2022) Development of a High-Power Capacity Open Source Electrical Stimulation System to Enhance Research into FES-Assisted Devices: Validation of FES Cycling. Sensors 22:2, pages 531.
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Junqiu Du, Shouyong Wang, Yun Cheng, Jiang Xu, Xuejing Li, Yimin Gan, Liying Zhang, Song Zhang & Xiaorui Cui. (2022) Effects of Neuromuscular Electrical Stimulation Combined with Repetitive Transcranial Magnetic Stimulation on Upper Limb Motor Function Rehabilitation in Stroke Patients with Hemiplegia. Computational and Mathematical Methods in Medicine 2022, pages 1-7.
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Kriti Mishra & Raji Thomas. 2022. Assistive Technologies for Assessment and Recovery of Neurological Impairments. Assistive Technologies for Assessment and Recovery of Neurological Impairments 279 303 .
Sateesh Reddy Avutu & Sudip Paul. 2022. Pervasive Healthcare. Pervasive Healthcare 103 118 .
T. Coelho-Magalhães, A. F. Vilaça-Martins, P. A. Araújo & H. Resende-Martins. 2022. XXVII Brazilian Congress on Biomedical Engineering. XXVII Brazilian Congress on Biomedical Engineering 1371 1377 .
Derek Yan & Rachel Vassar. (2021) Neuromuscular electrical stimulation for motor recovery in pediatric neurological conditions: a scoping review. Developmental Medicine & Child Neurology 63:12, pages 1394-1401.
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Andrea Crema, Ivan Furfaro, Flavio Raschellà, Mauro Rossini, Johannes Zajc, Constantin Wiesener, Walter Baccinelli, Davide Proserpio, Andreas Augsten, Nancy Immick, Sebastian Becker, Matthias Weber, Thomas Schauer, Karsten Krakow, Giulio Gasperini, Franco Molteni, Michael Friedrich Russold, Maria Bulgheroni & Silvestro Micera. (2021) Reactive Exercises with Interactive Objects: Interim Analysis of a Randomized Trial on Task-Driven NMES Grasp Rehabilitation for Subacute and Early Chronic Stroke Patients. Sensors 21:20, pages 6739.
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Yu-Kai Huang, Ana Rusu & Saul Rodriguez. (2021) A 4-Channel NMES IC for Wearable Applications. A 4-Channel NMES IC for Wearable Applications.
Kelly J Bower, Michele Verdonck, Anita Hamilton, Gavin Williams, Dawn Tan & Ross A Clark. (2021) What Factors Influence Clinicians’ Use of Technology in Neurorehabilitation? A Multisite Qualitative Study. Physical Therapy 101:5.
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Shih-Yen Tsai, Jennifer A. Schreiber, Natalie S. Adamczyk, Joanna Y. Wu, Son T. Ton, Ryan C. Hofler, James S. Walter, Timothy E. O'Brien, Gwendolyn L. Kartje & Russ P. Nockels. (2021) Improved Functional Outcome After Peripheral Nerve Stimulation of the Impaired Forelimb Post-stroke. Frontiers in Neurology 12.
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S. Farokh Atashzar, Jay Carriere & Mahdi Tavakoli. (2021) Review: How Can Intelligent Robots and Smart Mechatronic Modules Facilitate Remote Assessment, Assistance, and Rehabilitation for Isolated Adults With Neuro-Musculoskeletal Conditions?. Frontiers in Robotics and AI 8.
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Satoshi Miura, Junichi Takazawa, Yo Kobayashi & Masakatsu G. Fujie. (2021) Brain–Machine Interface Using Functional Electrical Stimulation and Motion-Related Cortical Potentials Identified by a Support Vector Machine. IEEE/ASME Transactions on Mechatronics 26:2, pages 1013-1021.
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Marco Crepaldi, Rune Thorsen, Johanna Jonsdottir, Silvia Scarpetta, Lorenzo De Michieli, Mirco Di Salvo, Giorgio Zini, Matteo Laffranchi & Maurizio Ferrarin. (2021) FITFES: A Wearable Myoelectrically Controlled Functional Electrical Stimulator Designed Using a User-Centered Approach. IEEE Transactions on Neural Systems and Rehabilitation Engineering 29, pages 2142-2152.
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Jovana Malesevic, Milos Kostic, Vladimir Kojic, Olivera Dordevic, Ljubica Konstantinovic, Thierry Keller & Matija Strbac. (2021) BEAGLE—A Kinematic Sensory System for Objective Hand Function Assessment in Technology-Mediated Rehabilitation. IEEE Transactions on Neural Systems and Rehabilitation Engineering 29, pages 1817-1826.
Crossref
Inga Lypunova Petersen, Weronika Nowakowska, Christian Ulrich & Lotte N. S. Andreasen Struijk. (2020) A Novel sEMG Triggered FES-Hybrid Robotic Lower Limb Rehabilitation System for Stroke Patients. IEEE Transactions on Medical Robotics and Bionics 2:4, pages 631-638.
Crossref
Stephen K. Agadagba, Xin Li & Leanne Lai Hang Chan. (2020) Excitation of the Pre-frontal and Primary Visual Cortex in Response to Transcorneal Electrical Stimulation in Retinal Degeneration Mice. Frontiers in Neuroscience 14.
Crossref
Moon-Young Chang, Gihyoun Lee, Young-Jin Jung & Ji-Su Park. (2020) Effect of Neuromuscular Electrical Stimulation on Masseter Muscle Thickness and Maximal Bite Force among Healthy Community-Dwelling Persons Aged 65 Years and Older: A Randomized, Double Blind, Placebo-Controlled Study. International Journal of Environmental Research and Public Health 17:11, pages 3783.
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Yassine Bouteraa, Ismail Ben Abdallah & Ahmed Elmogy. (2020) Design and control of an exoskeleton robot with EMG-driven electrical stimulation for upper limb rehabilitation. Industrial Robot: the international journal of robotics research and application 47:4, pages 489-501.
Crossref
Wei-jun Han, Yu-ge Guo, Yun-qi Wang & Jin-wan Wang. (2020) The effectiveness of electrical stimulation for the management of benign prostatic hyperplasia. Medicine 99:19, pages e19921.
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Shi-chun Bao, Ahsan Khan, Rong Song & Raymond Kai-yu Tong. (2020) Rewiring the Lesioned Brain: Electrical Stimulation for Post-Stroke Motor Restoration. Journal of Stroke 22:1, pages 47-63.
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Ioannis Kakkos, Stavros-Theofanis Miloulis, Kostakis Gkiatis, Georgios N. Dimitrakopoulos & George K. Matsopoulos. 2020. Advanced Computational Intelligence in Healthcare-7. Advanced Computational Intelligence in Healthcare-7 1 16 .
Henry Shin & Xiaogang Hu. (2019) Multichannel Nerve Stimulation for Diverse Activation of Finger Flexors. IEEE Transactions on Neural Systems and Rehabilitation Engineering 27:12, pages 2361-2368.
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Evon S Ereifej, Courtney E Shell, Jonathon S Schofield, Hamid Charkhkar, Ivana Cuberovic, Alan D Dorval, Emily L Graczyk, Takashi D Y Kozai, Kevin J Otto, Dustin J Tyler, Cristin G Welle, Alik S Widge, José Zariffa, Chet T Moritz, Dennis J Bourbeau & Paul D Marasco. (2019) Neural engineering: the process, applications, and its role in the future of medicine. Journal of Neural Engineering 16:6, pages 063002.
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Angad Jasuja, Varan Gupta, N. S. Sreenivasalu, Mary Liu, John Monz, Jagatpreet Singh Nir & Shalender Bhasin. (2019) Development of an extensible, wireless framework for personalized muscle rehabilitation. Development of an extensible, wireless framework for personalized muscle rehabilitation.
Kairu Li, Peter Boyd, Yu Zhou, Zhaojie Ju & Honghai Liu. (2019) Electrotactile Feedback in a Virtual Hand Rehabilitation Platform: Evaluation and Implementation. IEEE Transactions on Automation Science and Engineering 16:4, pages 1556-1565.
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Yicheng Yang, Yu Zhou, Jia Zeng, Keshi He & Honghai Liu. (2019) Electrotactile Stimulation Waveform Modulation Based on A Customized Portable Stimulator: A Pilot Study. Electrotactile Stimulation Waveform Modulation Based on A Customized Portable Stimulator: A Pilot Study.
Jake A. Mooney & Jessica Rose. (2019) A Scoping Review of Neuromuscular Electrical Stimulation to Improve Gait in Cerebral Palsy: The Arc of Progress and Future Strategies. Frontiers in Neurology 10.
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Antonio Ribas Neto, Julio Fajardo, Victor Ferman, Eric Fujiwara & Eric Rohmer. (2019) A Hybrid Control Strategy for Tendon-actuated Robotic Glove and Functional Electrical Stimulation – A Preliminary Study. A Hybrid Control Strategy for Tendon-actuated Robotic Glove and Functional Electrical Stimulation – A Preliminary Study.
Yubin Zhang, Jun Xie, Guanghua Xu, Peng Fang, Guangjing Du, Xiaodong Zhang, Min Li, Sicong Zhang, Tangfei Tao & Hua Yuan. (2019) Performance Evaluation of a "Switch-To-Target" Based Asynchronous SSVEP BCI Paradigm. Performance Evaluation of a "Switch-To-Target" Based Asynchronous SSVEP BCI Paradigm.
Dheeraj Rathee, Anirban Chowdhury, Yogesh Kumar Meena, Ashish Dutta, Suzanne McDonough & Girijesh Prasad. (2019) Brain–Machine Interface-Driven Post-Stroke Upper-Limb Functional Recovery Correlates With Beta-Band Mediated Cortical Networks. IEEE Transactions on Neural Systems and Rehabilitation Engineering 27:5, pages 1020-1031.
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Cassandra D Solomons & Vivekanandan Shanmugasundaram. (2019) Forearm and wrist band for Functional Electrical Stimulation. Forearm and wrist band for Functional Electrical Stimulation.
Michinari Kono & Jun Rekimoto. (2019) wavEMS: Improving Signal Variation Freedom of Electrical Muscle Stimulation. wavEMS: Improving Signal Variation Freedom of Electrical Muscle Stimulation.
Yubin Zhang, Jun Xie, Guanghua Xu, Xingliang Han, Min Li & Tangfei Tao. (2019) Asynchronous eye-tracking-actuated switch for steady-state visual evoked potential based brain-computer interface applications. Asynchronous eye-tracking-actuated switch for steady-state visual evoked potential based brain-computer interface applications.
Chen Huihui, Gao Farong, Chen Chao & Tian Taixing. (2018) Estimation of Ankle Angle Based on Multi-Feature Fusion with Random Forest. Estimation of Ankle Angle Based on Multi-Feature Fusion with Random Forest.
Dominic O’Connor, Louise Brennan & Brian Caulfield. (2018) The use of neuromuscular electrical stimulation (NMES) for managing the complications of ageing related to reduced exercise participation. Maturitas 113, pages 13-20.
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