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Research Paper

Expanding stroke telerehabilitation services to rural veterans: a qualitative study on patient experiences using the robotic stroke therapy delivery and monitoring system program

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Pages 21-27 | Received 18 Dec 2014, Accepted 09 Jun 2015, Published online: 02 Jul 2015

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A. H. Spits, S. G. Rozevink, G. A. Balk, J. M. Hijmans & C. K. van der Sluis. (2022) Stroke survivors’ experiences with home-based telerehabilitation using an assistive device to improve upper limb function: a qualitative study. Disability and Rehabilitation: Assistive Technology 0:0, pages 1-9.
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Grigore Burdea, Nam Kim, Kevin Polistico, Ashwin Kadaru, Namrata Grampurohit, Doru Roll & Frank Damiani. (2021) Assistive game controller for artificial intelligence-enhanced telerehabilitation post-stroke. Assistive Technology 33:3, pages 117-128.
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Jennifer L Hale-Gallardo, Consuelo M Kreider, Huanguang Jia, Gail Castaneda, I Magaly Freytes, Diane C Cowper Ripley, Zaccheus J Ahonle, Kimberly Findley & Sergio Romero. (2020) Telerehabilitation for Rural Veterans: A Qualitative Assessment of Barriers and Facilitators to Implementation. Journal of Multidisciplinary Healthcare 13, pages 559-570.
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Grigore C. Burdea, Namrata Grampurohit, Nam Kim, Kevin Polistico, Ashwin Kadaru, Simcha Pollack, Mooyeon Oh-Park, A.M. Barrett, Emma Kaplan, Jenny Masmela & Phalgun Nori. (2020) Feasibility of integrative games and novel therapeutic game controller for telerehabilitation of individuals chronic post-stroke living in the community. Topics in Stroke Rehabilitation 27:5, pages 321-336.
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Sharon Fong Mei Toh, Pablo Cruz Gonzalez & Kenneth N K Fong. (2023) Usability of a wearable device for home-based upper limb telerehabilitation in persons with stroke: A mixed-methods study. DIGITAL HEALTH 9, pages 205520762311537.
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Susan S Conroy, Stacey Harcum, Linda Keldsen & Christopher T BeverJrJr. (2020) Novel use of existing technology: A preliminary study of patient portal use for telerehabilitation. Journal of Telemedicine and Telecare 28:5, pages 380-388.
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Despina Laparidou, Ffion Curtis, Joseph Akanuwe, Khaled Goher, A. Niroshan Siriwardena & Ayse Kucukyilmaz. (2021) Patient, carer, and staff perceptions of robotics in motor rehabilitation: a systematic review and qualitative meta-synthesis. Journal of NeuroEngineering and Rehabilitation 18:1.
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Chingyi Nam, Bingbing Zhang, Tszying Chow, Fuqiang Ye, Yanhuan Huang, Ziqi Guo, Waiming Li, Wei Rong, Xiaoling Hu & Waisang Poon. (2021) Home-based self-help telerehabilitation of the upper limb assisted by an electromyography-driven wrist/hand exoneuromusculoskeleton after stroke. Journal of NeuroEngineering and Rehabilitation 18:1.
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Naghmeh Niknejad, Waidah Ismail, Mahadi Bahari & Behzad Nazari. (2021) Understanding Telerehabilitation Technology to Evaluate Stakeholders’ Adoption of Telerehabilitation Services: A Systematic Literature Review and Directions for Further Research. Archives of Physical Medicine and Rehabilitation 102:7, pages 1390-1403.
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Aylar Akbari, Faezeh Haghverd & Saeed Behbahani. (2021) Robotic Home-Based Rehabilitation Systems Design: From a Literature Review to a Conceptual Framework for Community-Based Remote Therapy During COVID-19 Pandemic. Frontiers in Robotics and AI 8.
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Kurt D. KnepleyJennifer Z. MaoPeter WieczorekFrederick O. OkoyeAbhi P. JainNoam Y. Harel. (2021) Impact of Telerehabilitation for Stroke-Related Deficits. Telemedicine and e-Health 27:3, pages 239-246.
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Bridee A. Neibling, Sarah M. Jackson, Kathryn S. Hayward & Ruth N. Barker. (2021) Perseverance with technology-facilitated home-based upper limb practice after stroke: a systematic mixed studies review. Journal of NeuroEngineering and Rehabilitation 18:1.
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Vaughan Murphy, Brandon P. R. Edmonds & Ana Luisa Trejos. (2021) Characterisation and Control of a Woven Biomimetic Actuator for Wearable Neurorehabilitative Devices. Actuators 10:2, pages 37.
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Marlena Klaic & Mary P. Galea. (2020) Using the Technology Acceptance Model to Identify Factors That Predict Likelihood to Adopt Tele-Neurorehabilitation. Frontiers in Neurology 11.
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Ann-Chatrin Linqvist Leonardsen, Camilla Hardeland, Ann Karin Helgesen & Vigdis A. Grøndahl. (2020) Patient experiences with technology enabled care across healthcare settings- a systematic review. BMC Health Services Research 20:1.
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Jeonghye Han & Daniela Conti. (2020) The Use of UTAUT and Post Acceptance Models to Investigate the Attitude towards a Telepresence Robot in an Educational Setting. Robotics 9:2, pages 34.
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Roni Barak Ventura, Alessandro Rizzo, Oded Nov & Maurizio Porfiri. (2020) A 3D printing approach toward targeted intervention in telerehabilitation. Scientific Reports 10:1.
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Eugene G. Kowch. (2019) Ethics to Prepare Educators for Professional Service Robots in Classrooms. Ethics to Prepare Educators for Professional Service Robots in Classrooms.
Leming Zhou & Bambang Parmanto. (2019) Reaching People With Disabilities in Underserved Areas Through Digital Interventions: Systematic Review. Journal of Medical Internet Research 21:10, pages e12981.
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P. A. Diluka Harischandra & A. M. Harsha S. Abeykoon. (2019) Upper-Limb Tele-Rehabilitation System with Force Sensorless Dynamic Gravity Compensation. International Journal of Social Robotics 11:4, pages 621-630.
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Edwin Daniel Oña, Juan Miguel Garcia-Haro, Alberto Jardón & Carlos Balaguer. (2019) Robotics in Health Care: Perspectives of Robot-Aided Interventions in Clinical Practice for Rehabilitation of Upper Limbs. Applied Sciences 9:13, pages 2586.
Crossref
Anne L van Ommeren, Laura C Smulders, Gerdienke B Prange-Lasonder, Jaap H Buurke, Peter H Veltink & Johan S Rietman. (2018) Assistive Technology for the Upper Extremities After Stroke: Systematic Review of Users’ Needs. JMIR Rehabilitation and Assistive Technologies 5:2, pages e10510.
Crossref
Nina Savela, Tuuli Turja & Atte Oksanen. (2017) Social Acceptance of Robots in Different Occupational Fields: A Systematic Literature Review. International Journal of Social Robotics 10:4, pages 493-502.
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Ahmed Elnady, W Ben Mortenson & Carlo Menon. (2018) Perceptions of Existing Wearable Robotic Devices for Upper Extremity and Suggestions for Their Development: Findings From Therapists and People With Stroke. JMIR Rehabilitation and Assistive Technologies 5:1, pages e12.
Crossref
Stephen N. Housley, Kathleen Fitzgerald & Andrew J. Butler. 2018. Rehabilitation Robotics. Rehabilitation Robotics 333 346 .
Elizabeth Broadbent. (2017) Interactions With Robots: The Truths We Reveal About Ourselves. Annual Review of Psychology 68:1, pages 627-652.
Crossref
Alisa Aguirre. (2016) Evaluating upper-extremity (dys)function using measurement unit technology and its applications to resource-constrained settings. Evaluating upper-extremity (dys)function using measurement unit technology and its applications to resource-constrained settings.

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