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钢琴家手指敲击动作中的认知与生物力学影响

Cognitive and biomechanical influences in pianists' finger tapping.

作者信息

Loehr Janeen D, Palmer Caroline

机构信息

Department of Psychology, McGill University, Montreal, QC, H3A 1B1, Canada.

出版信息

Exp Brain Res. 2007 Apr;178(4):518-28. doi: 10.1007/s00221-006-0760-8. Epub 2006 Nov 9.

Abstract

Movement sequences such as typing or tapping display important interactions among finger movements arising from anticipatory motion (preparing for upcoming events) and coupling (non-independence among fingers). We examined pianists' finger tapping for the influence of cognitive chunking processes and biomechanical coupling constraints. In a synchronization-continuation task, pianists repeatedly tapped four-finger sequences that differed in terms of the chunks that formed subsequences and in the transitions among physically adjacent or non-adjacent fingers. Chunking influenced intertap intervals, regardless of the particular fingers tapped; the final tap of each chunk was lengthened and less variable relative to other taps. The particular fingers tapped influenced peak finger heights, consistency of motion, and velocity-acceleration patterns, regardless of chunking. Thus, cognitive constraints influenced timing, whereas biomechanical factors influenced motion trajectories. These findings provide an important caveat for study of anticipatory motion by documenting the influence of biomechanical coupling on motion trajectories.

摘要

诸如打字或轻击之类的运动序列显示出预期运动(为即将发生的事件做准备)和耦合(手指间的非独立性)所产生的手指运动之间的重要相互作用。我们研究了钢琴家的手指轻击,以探究认知组块过程和生物力学耦合约束的影响。在同步 - 延续任务中,钢琴家反复轻击四指序列,这些序列在形成子序列的组块以及相邻或不相邻手指之间的转换方面存在差异。组块影响了每次轻击之间的间隔,无论轻击的是哪些特定手指;每个组块的最后一次轻击相对于其他轻击会延长且变异性更小。无论组块情况如何,所轻击的特定手指都会影响手指的峰值高度、运动的一致性以及速度 - 加速度模式。因此,认知约束影响时间安排,而生物力学因素影响运动轨迹。这些发现通过记录生物力学耦合对运动轨迹的影响,为预期运动的研究提供了重要警示。

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