Ryerson University, Toronto, ON, Canada.
J Cogn Neurosci. 2021 Apr;33(4):635-650. doi: 10.1162/jocn_a_01673. Epub 2021 Jan 21.
The ability to synchronize movements to a rhythmic stimulus, referred to as sensorimotor synchronization (SMS), is a behavioral measure of beat perception. Although SMS is generally superior when rhythms are presented in the auditory modality, recent research has demonstrated near-equivalent SMS for vibrotactile presentations of isochronous rhythms [Ammirante, P., Patel, A. D., & Russo, F. A. Synchronizing to auditory and tactile metronomes: A test of the auditory-motor enhancement hypothesis. , , 1882-1890, 2016]. The current study aimed to replicate and extend this study by incorporating a neural measure of beat perception. Nonmusicians were asked to tap to rhythms or to listen passively while EEG data were collected. Rhythmic complexity (isochronous, nonisochronous) and presentation modality (auditory, vibrotactile, bimodal) were fully crossed. Tapping data were consistent with those observed by Ammirante et al. (2016), revealing near-equivalent SMS for isochronous rhythms across modality conditions and a drop-off in SMS for nonisochronous rhythms, especially in the vibrotactile condition. EEG data revealed a greater degree of neural entrainment for isochronous compared to nonisochronous trials as well as for auditory and bimodal compared to vibrotactile trials. These findings led us to three main conclusions. First, isochronous rhythms lead to higher levels of beat perception than nonisochronous rhythms across modalities. Second, beat perception is generally enhanced for auditory presentations of rhythm but still possible under vibrotactile presentation conditions. Finally, exploratory analysis of neural entrainment at harmonic frequencies suggests that beat perception may be enhanced for bimodal presentations of rhythm.
能够根据节奏刺激同步运动,称为运动感觉同步(SMS),是节拍感知的行为测量指标。尽管当节奏以听觉模态呈现时,SMS 通常更优越,但最近的研究表明,对于等时节奏的振动触觉呈现,SMS 几乎相当[阿米尔安特,P.,帕特尔,A. D.,和鲁索,F. A. 同步到听觉和触觉节拍器:听觉-运动增强假说的检验。 , ,1882-1890,2016]。本研究旨在通过纳入节拍感知的神经测量来复制和扩展这项研究。要求非音乐家在收集 EEG 数据时跟随节奏或被动聆听。节奏复杂度(等时、非等时)和呈现模态(听觉、振动触觉、双模态)完全交叉。敲击数据与 Ammirante 等人观察到的数据一致(2016),在模态条件下,等时节奏的 SMS 几乎相等,非等时节奏的 SMS 下降,尤其是在振动触觉条件下。脑电图数据显示,等时试验比非等时试验以及听觉和双模态试验比振动触觉试验具有更高程度的神经同步。这些发现使我们得出了三个主要结论。首先,与非等时节奏相比,等时节奏在所有模态下都能引起更高水平的节拍感知。其次,听觉呈现节奏通常会增强节拍感知,但在振动触觉呈现条件下仍然可行。最后,对神经同步的谐波频率进行探索性分析表明,双模态呈现节奏可能会增强节拍感知。