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在音乐键盘演奏过程中大脑对改变的听觉反馈的反应:一项功能磁共振成像研究。

Brain responses to altered auditory feedback during musical keyboard production: an fMRI study.

作者信息

Pfordresher Peter Q, Mantell James T, Brown Steven, Zivadinov Robert, Cox Jennifer L

机构信息

University at Buffalo, State University of New York, Buffalo, NY 14260, USA.

St. Mary׳s College of Maryland, St. Mary׳s City, MD, USA.

出版信息

Brain Res. 2014 Mar 27;1556:28-37. doi: 10.1016/j.brainres.2014.02.004. Epub 2014 Feb 7.

Abstract

Alterations of auditory feedback during piano performance can be profoundly disruptive. Furthermore, different alterations can yield different types of disruptive effects. Whereas alterations of feedback synchrony disrupt performed timing, alterations of feedback pitch contents can disrupt accuracy. The current research tested whether these behavioral dissociations correlate with differences in brain activity. Twenty pianists performed simple piano keyboard melodies while being scanned in a 3-T magnetic resonance imaging (MRI) scanner. In different conditions they experienced normal auditory feedback, altered auditory feedback (asynchronous delays or altered pitches), or control conditions that excluded movement or sound. Behavioral results replicated past findings. Neuroimaging data suggested that asynchronous delays led to increased activity in Broca's area and its right homologue, whereas disruptive alterations of pitch elevated activations in the cerebellum, area Spt, inferior parietal lobule, and the anterior cingulate cortex. Both disruptive conditions increased activations in the supplementary motor area. These results provide the first evidence of neural responses associated with perception/action mismatch during keyboard production.

摘要

在钢琴演奏过程中,听觉反馈的改变可能会造成严重干扰。此外,不同的改变会产生不同类型的干扰效果。反馈同步性的改变会扰乱演奏节奏,而反馈音高内容的改变则会破坏准确性。当前的研究测试了这些行为上的分离是否与大脑活动的差异相关。20名钢琴家在3T磁共振成像(MRI)扫描仪中进行扫描时演奏简单的钢琴键盘旋律。在不同条件下,他们体验正常听觉反馈、改变的听觉反馈(异步延迟或音高改变),或排除动作或声音的对照条件。行为结果重复了过去的发现。神经影像学数据表明,异步延迟导致布洛卡区及其右侧同源区域的活动增加,而音高的干扰性改变则提高了小脑、Spt区、顶下小叶和前扣带回皮层的激活水平。两种干扰条件都增加了辅助运动区的激活。这些结果首次证明了在键盘演奏过程中与感知/动作不匹配相关的神经反应。

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