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Original Articles

Exploratory Study on the Effects of a Robotic Hand Rehabilitation Device on Changes in Grip Strength and Brain Activity after Stroke

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Pages 308-316 | Published online: 05 Jan 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Jia Xu, Yaxin Xue, Zhencheng Yu, Danyang Zhao, Xin Li, Jiajun Fan & Dong Han. (2023) Effect of exoskeleton manipulator on hand function rehabilitation for postburn patients. Disability and Rehabilitation 45:24, pages 4148-4155.
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Pradeepa Ruwan Wanni Arachchige, Ueda Ryo, Sadhani Karunarathna & Atsushi Senoo. (2023) Evaluation of fMRI activation in hemiparetic stroke patients after rehabilitation with low-frequency repetitive transcranial magnetic stimulation and intensive occupational therapy. International Journal of Neuroscience 133:7, pages 705-713.
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Articles from other publishers (14)

Lingyu Liu, Minxia Jin, Linguo Zhang, Qiuzhen Zhang, Dunrong Hu, Lingjing Jin & Zhiyu Nie. (2022) Brain–Computer Interface-Robot Training Enhances Upper Extremity Performance and Changes the Cortical Activation in Stroke Patients: A Functional Near-Infrared Spectroscopy Study. Frontiers in Neuroscience 16.
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E. Tavazzi, N. Bergsland, A. Pirastru, M. Cazzoli, V. Blasi & F. Baglio. (2022) MRI markers of functional connectivity and tissue microstructure in stroke-related motor rehabilitation: A systematic review. NeuroImage: Clinical 33, pages 102931.
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Zejian Chen, Nan Xia, Chang He, Minghui Gu, Jiang Xu, Xiaohua Han & Xiaolin Huang. (2021) Action observation treatment-based exoskeleton (AOT-EXO) for upper extremity after stroke: study protocol for a randomized controlled trial. Trials 22:1.
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Yu Tian, Hongbo Wang, Baoshan Niu, Yongshun Zhang, Jiazheng Du, Jianye Niu & Li Sun. (2021) Mechanical Design and Analysis of the End-Effector Finger Rehabilitation Robot (EFRR) for Stroke Patients. Machines 9:6, pages 110.
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Wang Hongbo, Tian Yu, Niu Baoshan, Du Jiazheng & Tian Junjie. (2021) A novel End-effector Finger Rehabilitation Robot (EFRR) for stroke patients. Journal of Physics: Conference Series 1885:5, pages 052039.
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Jinping Sun, Fei Yan, Aili Liu, Tiaotiao Liu & He Wang. (2020) Electrical Stimulation of the Motor Cortex or Paretic Muscles Improves Strength Production in Stroke Patients: A Systematic Review and Meta‐Analysis . PM&R 13:2, pages 171-179.
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Lenette M. Jones, Emily Ginier, Joseph Debbs, Jarrod L. Eaton, Catherine Renner, Jaclynn Hawkins, Rosanna Rios-Spicer, Emily Tang, Catherine Schertzing & Bruno Giordani. (2020) Exploring Representation of Diverse Samples in fMRI Studies Conducted in Patients With Cardiac-Related Chronic Illness: A Focused Systematic Review. Frontiers in Human Neuroscience 14.
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Grace J. Kim, Michael TaubCarly CreelmanChristine CahalanMichael W. O’DellJoel Stein. (2019) Feasibility of an Electromyography-Triggered Hand Robot for People After Chronic Stroke. The American Journal of Occupational Therapy 73:4, pages 7304345040p1-7304345040p9.
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Rachael Ballantyne & Paul M. Rea. 2019. Biomedical Visualisation. Biomedical Visualisation 117 147 .
Zan Yue, Xue Zhang & Jing Wang. (2017) Hand Rehabilitation Robotics on Poststroke Motor Recovery. Behavioural Neurology 2017, pages 1-20.
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Nyeonju Kang, Jeffery J. Summers & James H. Cauraugh. (2016) Non-Invasive Brain Stimulation Improves Paretic Limb Force Production: A Systematic Review and Meta-Analysis. Brain Stimulation 9:5, pages 662-670.
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Nyeonju Kang & James H. Cauraugh. (2015) Force control in chronic stroke. Neuroscience & Biobehavioral Reviews 52, pages 38-48.
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Brittany M. Young, Zack Nigogosyan, Léo M. Walton, Jie Song, Veena A. Nair, Scott W. Grogan, Mitchell E. Tyler, Dorothy F. Edwards, Kristin Caldera, Justin A. Sattin, Justin C. Williams & Vivek Prabhakaran. (2014) Changes in functional brain organization and behavioral correlations after rehabilitative therapy using a brain-computer interface. Frontiers in Neuroengineering 7.
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Angelo Basteris, Sharon M Nijenhuis, Arno HA Stienen, Jaap H Buurke, Gerdienke B Prange & Farshid Amirabdollahian. (2014) Training modalities in robot-mediated upper limb rehabilitation in stroke: a framework for classification based on a systematic review. Journal of NeuroEngineering and Rehabilitation 11:1, pages 111.
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