Su Yi-Huang
Department of Movement Science, Faculty of Sport and Health Sciences, Technical University of Munich, Munich, Germany.
Sci Rep. 2016 Mar 7;6:22774. doi: 10.1038/srep22774.
Humans move to music spontaneously, and this sensorimotor coupling underlies musical rhythm perception. The present research proposed that, based on common action representation, different metrical levels as in auditory rhythms could emerge visually when observing structured dance movements. Participants watched a point-light figure performing basic steps of Swing dance cyclically in different tempi, whereby the trunk bounced vertically at every beat and the limbs moved laterally at every second beat, yielding two possible metrical periodicities. In Experiment 1, participants freely identified a tempo of the movement and tapped along. While some observers only tuned to the bounce and some only to the limbs, the majority tuned to one level or the other depending on the movement tempo, which was also associated with individuals' preferred tempo. In Experiment 2, participants reproduced the tempo of leg movements by four regular taps, and showed a slower perceived leg tempo with than without the trunk bouncing simultaneously in the stimuli. This mirrors previous findings of an auditory 'subdivision effect', suggesting the leg movements were perceived as beat while the bounce as subdivisions. Together these results support visual metrical perception of dance movements, which may employ similar action-based mechanisms to those underpinning auditory rhythm perception.
人类会自发地随着音乐移动,这种感觉运动耦合是音乐节奏感知的基础。本研究提出,基于共同的动作表征,在观察结构化舞蹈动作时,听觉节奏中不同的节拍层次可以在视觉上呈现出来。参与者观看一个光点人物以不同的节奏循环表演摇摆舞的基本舞步,躯干在每一拍时垂直跳动,四肢在每隔一拍时横向移动,产生两种可能的节拍周期。在实验1中,参与者自由确定动作的节奏并跟着敲击。虽然一些观察者只关注跳动,一些只关注四肢,但大多数人会根据动作节奏关注其中一个层次,这也与个人偏好的节奏相关。在实验2中,参与者通过四次有规律的敲击来重现腿部动作的节奏,并且在刺激中同时有躯干跳动时,他们感知到的腿部节奏比没有时更慢。这反映了之前听觉“细分效应”的研究结果,表明腿部动作被视为节拍,而跳动被视为细分。这些结果共同支持了舞蹈动作的视觉节拍感知,其可能采用了与支撑听觉节奏感知类似的基于动作的机制。