Accuracy and precision of a wrist movement when vibrotactile prompts inform movement speed |
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Authors: | Matthew E. Holman Gary Goldberg |
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Affiliation: | 1. Department of Physical Therapy, Virginia Commonwealth University, Richmond, VA, USA;2. Department of Physical Medicine and Rehabilitation, Virginia Commonwealth University, Richmond, VA, USA;3. Polytrauma Rehabilitation System of Care, Hunter Holmes McGuire VAMC, Richmond, VA, USA |
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Abstract: | AbstractPurpose: This study investigated the effect of movement speed on task accuracy and precision when participants were provided temporally oriented vibrotactile prompts. Materials and methods: Participants recreated a simple wrist flexion/extension movement at fast and slow speeds based on target patterns conveyed via vibrating motors affixed to the forearm. Each participant was given five performance-blinded trials to complete the task at each speed. Movement accuracy (root mean square error) and precision (standard deviation) were calculated for each trial in both the spatial and temporal domains. Results: 28 participants completed the study. Results showed temporal accuracy and precision improved with movement speed (both: fast?>?slow, p?0.01), while all measures improved across trials (temporal accuracy and precision: trial 1?p?0.05; spatial accuracy: trial 1 and 2?p?0.05; spatial precision: trial 1?p?0.05). Conclusions: Overall, temporal and spatial results indicate participants quickly recreated and maintained the desired pattern regardless of speed. Additionally, movement speed seems to influence movement accuracy and precision, particularly within the temporal domain. These results highlight the potential of vibrotactile prompts in rehabilitation paradigms aimed at motor re-education. |
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Keywords: | Speed-accuracy motor control vibration |
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