Xiong-Wen Ke, Yong Tai Wang, Aiqiao Shi, Zhi Zheng, Dan Phillips, David Long, Shihui Chen, Bradford Berk
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These modules are designed to tailor the learning experience to each user's SCI level, age, gender, body height, and weight. Key features of the ARe-IVF modules include verbal cues, computer graphic indications, and AR-enhanced feedback to support skill acquisition.</p><p><strong>Results: </strong>The anticipated outcomes of the ARe-IVF modules include improved safety and effectiveness in WSTr by providing intuitive and concise guidance for key movements in wheelie and curbing maneuvers. Additionally, these modules offer an accessible alternative WSTr method for manual wheelchair users, caregivers, and rehabilitation therapists, with potential applications in Rehabilitation Centers, Hospitals, or home settings.</p><p><strong>Conclusion: </strong>The ARe-IVF learning modules present an innovative approach to WSTr for manual wheelchair users with SCI, so that the modules provide promising learning outcomes through tailored, AR-supported feedback. This approach may empower wheelchair users to develop advanced skills with increased safety and confidence, ultimately improving rehabilitation outcomes and expanding training accessibility.</p>","PeriodicalId":47806,"journal":{"name":"Disability and Rehabilitation-Assistive Technology","volume":" ","pages":"1-10"},"PeriodicalIF":1.9000,"publicationDate":"2024-11-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Application of visual feedback and AR-enhanced wheelchair skill training.\",\"authors\":\"Xiong-Wen Ke, Yong Tai Wang, Aiqiao Shi, Zhi Zheng, Dan Phillips, David Long, Shihui Chen, Bradford Berk\",\"doi\":\"10.1080/17483107.2024.2426615\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Purpose: </strong>Manual wheelchair users with spinal cord injury (SCI) face challenges in wheelchair skill training (WSTr) due to the complexity of learning advanced skills and limited access to rehabilitation services. 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引用次数: 0
摘要
目的:患有脊髓损伤(SCI)的手动轮椅使用者在轮椅技能训练(WSTr)方面面临挑战,因为学习高级技能非常复杂,而且获得康复服务的机会有限。本综述旨在总结针对 SCI/残疾人士的现有轮椅技能训练方法,并建议使用增强现实(AR)增强型即时视觉反馈(ARe-IVF)学习模块进行轮椅和路缘技能训练:拟议的 ARe-IVF 学习模块将结合 AR 增强视觉反馈,使用户能够直观地看到轮椅技能的空间和时间方面,并通过计算机视觉技术评估他们的表现。这些模块旨在根据每个用户的 SCI 水平、年龄、性别、身高和体重量身定制学习体验。ARe-IVF 模块的主要特点包括语言提示、计算机图形指示和 AR 增强反馈,以支持技能学习:结果:ARe-IVF 模块的预期成果包括:通过为侧翻和弯道机动的关键动作提供直观简明的指导,提高 WSTr 的安全性和有效性。此外,这些模块还为手动轮椅使用者、护理人员和康复治疗师提供了一种无障碍的 WSTr 替代方法,有望应用于康复中心、医院或家庭环境中:ARe-IVF学习模块为患有SCI的手动轮椅使用者提供了一种创新的WSTr方法,通过量身定制、AR支持的反馈,该模块可提供有前景的学习成果。这种方法可以增强轮椅使用者开发高级技能的能力,提高安全性和自信心,最终改善康复效果并扩大培训的可及性。
Application of visual feedback and AR-enhanced wheelchair skill training.
Purpose: Manual wheelchair users with spinal cord injury (SCI) face challenges in wheelchair skill training (WSTr) due to the complexity of learning advanced skills and limited access to rehabilitation services. This review aims to summarize existing WSTr methods for individuals with SCI/disabilities and propose the use of Augmented Reality (AR)-enhanced Immediate Visual Feedback (ARe-IVF) learning modules for wheelie and curbing skill training.
Methods: The proposed ARe-IVF learning modules will incorporate AR-enhanced visual feedback, allowing users to visualize spatial and temporal aspects of wheelchair skills and assess their performance through computer vision technology. These modules are designed to tailor the learning experience to each user's SCI level, age, gender, body height, and weight. Key features of the ARe-IVF modules include verbal cues, computer graphic indications, and AR-enhanced feedback to support skill acquisition.
Results: The anticipated outcomes of the ARe-IVF modules include improved safety and effectiveness in WSTr by providing intuitive and concise guidance for key movements in wheelie and curbing maneuvers. Additionally, these modules offer an accessible alternative WSTr method for manual wheelchair users, caregivers, and rehabilitation therapists, with potential applications in Rehabilitation Centers, Hospitals, or home settings.
Conclusion: The ARe-IVF learning modules present an innovative approach to WSTr for manual wheelchair users with SCI, so that the modules provide promising learning outcomes through tailored, AR-supported feedback. This approach may empower wheelchair users to develop advanced skills with increased safety and confidence, ultimately improving rehabilitation outcomes and expanding training accessibility.