感觉模式和节奏对运动计时的影响

Jaeuk Jeong, Soo Mi Nam, Hyejin Seo
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引用次数: 0

摘要

准确的运动定时需要协调控制动作以响应外部刺激。在过去几年中,有多项研究调查了感觉输入对运动计时的影响;然而,证据仍然相互矛盾。本研究旨在考察感觉模式和节奏对定时动作准确性的影响,并探索增强运动定时的策略。参与者(n = 30)在虚拟现实中完成了同步和适应画圆任务。在实验 1 中,参与者根据感官模式(听觉、视觉、触觉、视听、视听触觉和视听触觉)和节奏(20、30 和 60 bpm)在重复刺激下同步画圈。在实验 2 中,我们考察了在意外的节奏变化(无论是加快还是减慢)条件下画圆任务的计时适应性。触觉刺激在 60 bpm 时的计时准确度明显更高,而听觉刺激在 30 bpm 时的计时准确度达到峰值。通过实验 1,我们发现感觉模式对运动计时的影响因节奏而异,触觉模式在较快节奏下有效,而听觉模式在中等节奏下有益。此外,实验 2 显示,通过纠正计时错误来适应变化,在节奏降低时比节奏提高时更具挑战性。我们的研究结果表明,运动计时受到感官模式和节奏变化的复杂影响。因此,要提高运动计时能力,就必须全面了解这些因素及其应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of sensory modality and tempo in motor timing
Accurate motor timing requires the coordinated control of actions in response to external stimuli. Over the past few years, several studies have investigated the effect of sensory input on motor timing; however, the evidence remains conflicting. The purpose of this study was to examine the impact of sensory modality and tempo on the accuracy of timed movements and explore strategies for enhancing motor timing.Participants (n = 30) performed synchronization and adaptation circle drawing tasks in virtual reality. In Experiment 1, participants synchronized circle drawing with repeated stimuli based on sensory modalities (auditory, visual, tactile, audio-visual, audio-tactile, and visual-tactile) and tempos (20, 30, and 60 bpm). In Experiment 2, we examined timing adaptation in circle drawing tasks under conditions of unexpected tempo changes, whether increased or decreased.A significant interaction effect between modality and tempo was observed in the comparison of timing accuracy. Tactile stimuli exhibited significantly higher timing accuracy at 60 bpm, whereas auditory stimuli demonstrated a peak accuracy at 30 bpm. The analysis revealed a significantly larger timing error when adapting to changes in the tempo-down condition compared with the tempo-up condition.Through Experiment 1, we found that sensory modality impacts motor timing differently depending on the tempo, with tactile modality being effective at a faster tempo and auditory modality being beneficial at a moderate tempo. Additionally, Experiment 2 revealed that adapting to changes by correcting timing errors is more challenging with decreasing tempo than with increasing tempo. Our findings suggest that motor timing is intricately influenced by sensory modality and tempo variation. Therefore, to enhance the motor timing, a comprehensive understanding of these factors and their applications is imperative.
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