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Accent Stabilizes 1:2 Sensorimotor Synchronization of Rhythmic Knee Flexion-Extension Movement in Upright Stance

机译:口音稳定了立式姿势的节律性膝盖屈伸运动的1:2感觉运动同步

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摘要

Numerous studies have shown the importance of metrical structure on beat perception and sensorimotor synchronization (SMS), which indicates why metrical structure has evolved as a widespread musical element. In the current study, we aimed to investigate the effect of metrical structure with or without accented sounds and the alignment of accent with flexion or extension movements on the stability of 1:2 SMS in rhythmic knee flexion-extension movement in upright stance (flexing the knee once every two sounds). Fourteen participants completed 1:2 rhythmic knee flexion-extension movements with a metronome beat that accelerated from 2 to 8 Hz (the frequency of the movement was 1–4 Hz). Three sound-movement conditions were provided: (1) combining the flexion phase with loud (accented) sound and the extension phase with soft (non-accented) sound, (2) the reverse combination, and (3) combining both movements with loud sound. ANOVA results showed that metrical structure with accented sounds stabilizes 1:2 SMS in the range of 3.5–7.8 Hz in terms of timing accuracy, and flexing on the accented sound is more globally stable (resistant to phase transition) than flexing on the non-accented sound. Furthermore, our results showed that metrical structure with accented sounds induces larger movement amplitude in the range of 4.6–7.8 Hz than does that without accented sounds. The present study demonstrated that metrical structure with accented sounds stabilizes SMS and induces larger movement amplitude in rhythmic knee flexion-extension movement in upright stance than does SMS with sequences without accents. In addition, we demonstrated that coordinating flexion movement with accented sound is more globally stable than coordinating extension movement with accented sound. Thus, whereas previous studies have revealed that metrical structure enhances the timing accuracy of SMS, the current study revealed that metrical structure enhances the global stability of SMS.
机译:大量研究表明,节奏结构对节拍感知和感觉运动同步(SMS)的重要性,这说明了为什么节奏结构已发展成为一种广泛的音乐元素。在当前的研究中,我们旨在研究在有声或无声的情况下,韵律结构以及有屈或伸运动的重音对齐对节律性膝关节屈伸运动中1:2 SMS稳定性的影响(直立姿势)。膝盖每两个声音一次)。 14位参与者完成了1:2的有节奏的膝盖屈伸运动,其节拍器节拍从2加速到8 Hz(运动频率为1-4 Hz)。提供了三种声音移动条件:(1)将屈曲阶段与响亮(重音)声音结合在一起,将伸展阶段与柔和(无重音)声音结合起来,(​​2)反向组合,以及(3)将两个动作与响声结合起来声音。方差分析结果表明,带有重音的音调结构在定时精度方面将1:2 SMS稳定在3.5-7.8 Hz的范围内,并且重音的弯曲比非重音的弯曲更全局稳定(耐相变)。重音。此外,我们的结果表明,带有重音的音调结构比没有重音的音调在4.6-7.8Hz范围内引起更大的运动幅度。本研究表明,与带有重音的序列相比,带有重音的音调结构可以稳定SMS并在节律的膝盖屈伸运动中以直立姿势诱导更大的运动幅度。此外,我们证明了与带有重音的协调伸展运动相比,与带重音的协调弯曲运动在全球范围内更稳定。因此,尽管先前的研究表明度量结构增强了SMS的定时精度,但当前的研究表明度量结构增强了SMS的全局稳定性。

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