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Original Articles

Driving Motor Recovery After Stroke

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Pages 397-411 | Published online: 09 Jan 2015

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

Read on this site (5)

M. Veeresh Babu, V. Ramya & V. Senthil Murugan. (2023) Design and development of embedded/SQL home based upper limb rehabilitation. International Journal of Healthcare Management 16:4, pages 513-523.
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Giacomo Zuccon, Basilio Lenzo, Matteo Bottin & Giulio Rosati. (2022) Rehabilitation robotics after stroke: a bibliometric literature review. Expert Review of Medical Devices 19:5, pages 405-421.
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Kamal Narayan Arya, Rajesh Verma, R.K. Garg, V.P. Sharma, Monika Agarwal & G.G. Aggarwal. (2012) Meaningful Task-Specific Training (MTST) for Stroke Rehabilitation: A Randomized Controlled Trial. Topics in Stroke Rehabilitation 19:3, pages 193-211.
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Kamal Narayan Arya, Rajesh Verma & R.K. Garg. (2011) Estimating the Minimal Clinically Important Difference of an Upper Extremity Recovery Measure in Subacute Stroke Patients. Topics in Stroke Rehabilitation 18:sup1, pages 599-610.
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Giulio Rosati. (2010) The place of robotics in post-stroke rehabilitation. Expert Review of Medical Devices 7:6, pages 753-758.
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Articles from other publishers (28)

Alexander Gnanaprakasam, Suruliraj Karthikbabu, N Ravishankar & John M Solomon. (2023) Effect of task-based bilateral arm training on upper limb recovery after stroke: A systematic review and meta-analysis. Journal of Stroke and Cerebrovascular Diseases 32:7, pages 107131.
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Khadijeh Moulaei, Kambiz Bahaadinbeigy, Ali Akbar Haghdoostd, Mansour Shahabi Nezhad & Abbas Sheikhtaheri. (2023) Overview of the role of robots in upper limb disabilities rehabilitation: a scoping review. Archives of Public Health 81:1.
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José Carlos Rodrigues, Paulo Menezes & Maria Teresa Restivo. (2023) An augmented reality interface to control a collaborative robot in rehab: A preliminary usability evaluation. Frontiers in Digital Health 5.
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Thanh Quoc Phan, Hien Nguyen, Alexander Mulyk, Billy C. Vermillion & Sang Wook Lee. (2020) Development of Self-Adaptable Mechanism to Compensate Angle-Dependent Flexor Tone of the Elbow Joint Post-stroke: A Pilot Study. Development of Self-Adaptable Mechanism to Compensate Angle-Dependent Flexor Tone of the Elbow Joint Post-stroke: A Pilot Study.
Walter Baccinelli, Maria Bulgheroni & Carlo Albino Frigo. (2020) Using UHF RFID Properties to Develop and Optimize an Upper-Limb Rehabilitation System. Sensors 20:11, pages 3224.
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Walter Baccinelli, Maria Bulgheroni & Carlo Albino Frigo. (2020) Development and first evaluation of a RF-based rehabilitation system. Development and first evaluation of a RF-based rehabilitation system.
Xuefeng Wang, Phillip Tran, Sarah M. Callahan, Steven L. Wolf & Jaydev P. Desai. (2019) Towards the development of a voice-controlled exoskeleton system for restoring hand function. Towards the development of a voice-controlled exoskeleton system for restoring hand function.
Edward P. Washabaugh, Jane Guo, Chih-Kang Chang, C. David Remy & Chandramouli Krishnan. (2019) A Portable Passive Rehabilitation Robot for Upper-Extremity Functional Resistance Training. IEEE Transactions on Biomedical Engineering 66:2, pages 496-508.
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Paolo Milia, MariaCristina Peccini, Federico De Salvo, Alice Sfaldaroli, Chiara Grelli, Giorgia Lucchesi, Nora Sadauskas, Catia Rossi, Marco Caserio & Mario Bigazzi. (2019) Rehabilitation with robotic glove (Gloreha) in poststroke patients. Digital Medicine 5:2, pages 62.
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J. M. Catalan, J. V. Garcia, D. Lopez, A. Ugartemendia, I. Diaz, L. D. Lledo, A. Blanco, J. Barios, A. Bertomeu & N. Garcia-Aracil. 2019. Converging Clinical and Engineering Research on Neurorehabilitation III. Converging Clinical and Engineering Research on Neurorehabilitation III 449 453 .
Erik Kyrkjebo, Mads Johan Laastad & Oyvind Stavdahl. (2018) Feasibility of the UR5 Industrial Robot for Robotic Rehabilitation of the Upper Limbs After Stroke. Feasibility of the UR5 Industrial Robot for Robotic Rehabilitation of the Upper Limbs After Stroke.
Šárka Daňková & Dalibor Pastucha. (2018) Robot assisted rehabilitation in post stroke patients with upper limb paresis. Neurologie pro praxi 19:4, pages 290-293.
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J.M Catalan, J.V. Garcia, D. Lopez, J. Diez, A. Blanco, L.D. Lledo, F. J. Badesa, A. Ugartemendia, I. Diaz, R. Neco & N. Garcia-Aracil. (2018) Patient Evaluation of an Upper-Limb Rehabilitation Robotic Device for Home Use. Patient Evaluation of an Upper-Limb Rehabilitation Robotic Device for Home Use.
Iñaki Díaz, José María Catalan, Francisco Javier Badesa, Xabier Justo, Luis Daniel Lledo, Axier Ugartemendia, Jorge Juan Gil, Jorge Díez & Nicolás García-Aracil. (2018) Development of a robotic device for post-stroke home tele-rehabilitation. Advances in Mechanical Engineering 10:1, pages 168781401775230.
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Julie Bernhardt, Kathryn S. Hayward, Gert Kwakkel, Nick S. Ward, Steven L. Wolf, Karen Borschmann, John W. Krakauer, Lara A. Boyd, S. Thomas Carmichael, Dale Corbett & Steven C. Cramer. (2017) Agreed Definitions and a Shared Vision for New Standards in Stroke Recovery Research: The Stroke Recovery and Rehabilitation Roundtable Taskforce. Neurorehabilitation and Neural Repair 31:9, pages 793-799.
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Julie Bernhardt, Kathryn S Hayward, Gert Kwakkel, Nick S Ward, Steven L Wolf, Karen Borschmann, John W Krakauer, Lara A Boyd, S Thomas Carmichael, Dale Corbett & Steven C Cramer. (2017) Agreed definitions and a shared vision for new standards in stroke recovery research: The Stroke Recovery and Rehabilitation Roundtable taskforce. International Journal of Stroke 12:5, pages 444-450.
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Ekpenyong C. (2017) Use of Hand Rehabilitation Board (Dominic’s Board) in Post Traumatic/Stroke Rehabilitation of the Upper Limbs. Journal of Sports Medicine and Therapy 2:2, pages 057-065.
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Saliha Y. Amasyali & Ayşe Yaliman. (2016) Comparison of the effects of mirror therapy and electromyography-triggered neuromuscular stimulation on hand functions in stroke patients: a pilot study. International Journal of Rehabilitation Research 39:4, pages 302-307.
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Suhyun Lee, Yumi Kim & Byoung-Hee Lee. (2016) Effect of Virtual Reality-based Bilateral Upper Extremity Training on Upper Extremity Function after Stroke: A Randomized Controlled Clinical Trial. Occupational Therapy International 23:4, pages 357-368.
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Patricia Graef, Maria Luísa Rocha Dadalt, Daiana Amaral Medeiros da Silva Rodrigués, Cinara Stein & Aline de Souza Pagnussat. (2016) Transcranial magnetic stimulation combined with upper-limb training for improving function after stroke: A systematic review and meta-analysis. Journal of the Neurological Sciences 369, pages 149-158.
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Paweł Maciejasz, Jörg Eschweiler, Kurt Gerlach-Hahn, Arne Jansen-Troy & Steffen Leonhardt. (2014) A survey on robotic devices for upper limb rehabilitation. Journal of NeuroEngineering and Rehabilitation 11:1.
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Shanta Pandian & Kamal Narayan Arya. (2014) Stroke-related motor outcome measures: Do they quantify the neurophysiological aspects of upper extremity recovery?. Journal of Bodywork and Movement Therapies 18:3, pages 412-423.
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Othmar Schuhfried & Silvia Brandstätter. 2013. Kompendium Physikalische Medizin und Rehabilitation. Kompendium Physikalische Medizin und Rehabilitation 377 409 .
Sergi Berm?dez i Badia & M. S. Cameir?o. (2012) The Neurorehabilitation Training Toolkit (NTT): A Novel Worldwide Accessible Motor Training Approach for At-Home Rehabilitation after Stroke. Stroke Research and Treatment 2012, pages 1-13.
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Tomas E. Ward. 2013. Towards Practical Brain-Computer Interfaces. Towards Practical Brain-Computer Interfaces 17 40 .
Kamal Narayan Arya, Shanta Pandian, Rajesh Verma & R.K. Garg. (2011) Movement therapy induced neural reorganization and motor recovery in stroke: A review. Journal of Bodywork and Movement Therapies 15:4, pages 528-537.
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Jakob Oblak, Imre Cikajlo & Zlatko Matjacic. (2010) Universal Haptic Drive: A Robot for Arm and Wrist Rehabilitation. IEEE Transactions on Neural Systems and Rehabilitation Engineering 18:3, pages 293-302.
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Lalit Kalra. (2010) Stroke Rehabilitation 2009. Stroke 41:2.
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