2014Technology and Health CareRequires access

Interactive 3-dimensional virtual reality rehabilitation for patients with chronic imbalance and vestibular dysfunction

Shih‐Ching Yeh, Shuya Chen, Pa‐Chun Wang, Mu‐Chun Su, Chia-Huang Chang, Po‐Yi Tsai

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Abstract

BACKGROUND: Chronic imbalance is common in patients with vestibular dysfunction. Vestibular rehabilitation is effective in improving upright balance control. Vestibular rehabilitation exercises, such as Cawthorne-Cooksey exercises, include simple repetitive movements and have limited feedback and adaptive training protocols. Interactive systems based on virtual reality (VR) technology may improve vestibular rehabilitation. OBJECTIVE: The objective of this study was to examine the effectiveness of an interactive 3-dimensional VR system for vestibular rehabilitation. METHODS: In 49 subjects with vestibular dysfunction, VR rehabilitation exercises were performed in 6 sessions. Before and after rehabilitation, subjects were evaluated for performance of the training exercises; the center of pressure was measured for 20 seconds and balance indices were determined. RESULTS: Five training scores (total 6) showed a significant improvement. For balance indices in condition of non-stimulation, all of them (total 5) showed a trend of improvement, in which there was a significant improvement in mean mediolateral. For balance indices in condition of post-stimulation, there was a significant improvement in statokinesigram and maximum mediolateral. CONCLUSIONS: The VR rehabilitation exercises were effective in improving upright balance control in patients with vestibular dysfunction.

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What this paper is about

BACKGROUND: Chronic imbalance is common in patients with vestibular dysfunction. Vestibular rehabilitation is effective in improving upright balance control. Vestibular rehabilitation exercises, such as Cawthorne-Cooksey exercises, include simple repetitive movements and have limited feedback and adaptive training protocols. Interactive systems based on virtual reality (VR) technology may improve vestibular rehabilitation. OBJECTIVE: The objective of this study was to examine the effectiveness of an interactive 3-dimensional VR system for vestibular rehabilitation. METHODS: In 49 subjects with vestibular dysfunction, VR rehabilitation exercises were performed in 6 sessions. Before and after rehabilitation, subjects were evaluated for performance of the training exercises; the center of pressure was measured for 20 seconds and balance indices were determined. RESULTS: Five training scores (total 6) showed a significant improvement. For balance indices in condition of non-stimulation, all of them (total 5) showed a trend of improvement, in which there was a significant improvement in mean mediolateral. For balance indices in condition of post-stimulation, there was a significant improvement in statokinesigram and maximum mediolateral. CONCLUSIONS: The VR rehabilitation exercises were effective in improving upright balance control in patients with vestibular dysfunction.

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Available abstract

BACKGROUND: Chronic imbalance is common in patients with vestibular dysfunction. Vestibular rehabilitation is effective in improving upright balance control. Vestibular rehabilitation exercises, such as Cawthorne-Cooksey exercises, include simple repetitive movements and have limited feedback and adaptive training protocols. Interactive systems based on virtual reality (VR) technology may improve vestibular rehabilitation. OBJECTIVE: The objective of this study was to examine the effectiveness of an interactive 3-dimensional VR system for vestibular rehabilitation. METHODS: In 49 subjects with vestibular dysfunction, VR rehabilitation exercises were performed in 6 sessions. Before and after rehabilitation, subjects were evaluated for performance of the training exercises; the center of pressure was measured for 20 seconds and balance indices were determined. RESULTS: Five training scores (total 6) showed a significant improvement. For balance indices in condition of non-stimulation, all of them (total 5) showed a trend of improvement, in which there was a significant improvement in mean mediolateral. For balance indices in condition of post-stimulation, there was a significant improvement in statokinesigram and maximum mediolateral. CONCLUSIONS: The VR rehabilitation exercises were effective in improving upright balance control in patients with vestibular dysfunction.

Key concepts: Vestibular system, Rehabilitation, Balance (ability), Vestibular rehabilitation, Physical medicine and rehabilitation, Virtual reality, Medicine, Physical therapy

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