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首页> 外文期刊>Frontiers in Psychology >Long-range correlation properties in timing of skilled piano performance: the influence of auditory feedback and deep brain stimulation
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Long-range correlation properties in timing of skilled piano performance: the influence of auditory feedback and deep brain stimulation

机译:熟练演奏钢琴时机的长期相关特性:听觉反馈和深度脑刺激的影响

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Unintentional timing deviations during musical performance can be conceived of as timing errors. However, recent research on humanizing computer-generated music has demonstrated that timing fluctuations that exhibit long-range temporal correlations (LRTC) are preferred by human listeners. This preference can be accounted for by the ubiquitous presence of LRTC in human tapping and rhythmic performances. Interestingly, the manifestation of LRTC in tapping behavior seems to be driven in a subject-specific manner by the LRTC properties of resting-state background cortical oscillatory activity. In this framework, the current study aimed to investigate whether propagation of timing deviations during the skilled, memorized piano performance (without metronome) of 17 professional pianists exhibits LRTC and whether the structure of the correlations is influenced by the presence or absence of auditory feedback. As an additional goal, we set out to investigate the influence of altering the dynamics along the cortico-basal-ganglia-thalamo-cortical network via deep brain stimulation (DBS) on the LRTC properties of musical performance. Specifically, we investigated temporal deviations during the skilled piano performance of a non-professional pianist who was treated with subthalamic-deep brain stimulation (STN-DBS) due to severe Parkinson's disease, with predominant tremor affecting his right upper extremity. In the tremor-affected right hand, the timing fluctuations of the performance exhibited random correlations with DBS OFF. By contrast, DBS restored long-range dependency in the temporal fluctuations, corresponding with the general motor improvement on DBS. Overall, the present investigations demonstrate the presence of LRTC in skilled piano performances, indicating that unintentional temporal deviations are correlated over a wide range of time scales. This phenomenon is stable after removal of the auditory feedback, but is altered by STN-DBS, which suggests that cortico-basal ganglia-thalamocortical circuits play a role in the modulation of the serial correlations of timing fluctuations exhibited in skilled musical performance.
机译:音乐表演过程中无意识的时间偏差可以被认为是时间误差。但是,有关计算机生成音乐的人性化的最新研究表明,表现出长时间时间相关性(LRTC)的定时波动受到听众的青睐。 LRTC在人类拍打和有节奏的表演中无处不在可以解释这种偏爱。有趣的是,LRTC在敲击行为中的表现似乎是由静止状态背景皮质振荡活动的LRTC特性以特定对象驱动的。在此框架下,当前的研究旨在调查在17位专业钢琴家熟练,记忆的钢琴演奏(无节拍器)过程中定时偏差的传播是否表现出LRTC以及相关性的结构是否受到听觉反馈的影响。作为另一个目标,我们着手研究通过深部脑刺激(DBS)改变沿皮质-基底神经节-丘脑-皮质网络的动力学对音乐表演的LRTC特性的影响。具体来说,我们调查了由于严重的帕金森氏病而受到丘脑深部脑刺激(STN-DBS)治疗的非专业钢琴家在熟练钢琴演奏过程中的时间偏差,主要震颤影响了他的右上肢。在受地震影响的右手,表演的时间波动表现出与DBS OFF的随机相关性。相比之下,DBS恢复了时间波动的长期依赖性,这与DBS的整体运动改善相对应。总体而言,本研究表明熟练的钢琴演奏中存在LRTC,这表明在很宽的时间范围内,无意识的时间偏差是相关的。这种现象在去除听觉反馈后是稳定的,但是被STN-DBS改变了,这表明皮质基底神经节-丘脑皮层电路在熟练演奏中表现出的时间波动的序列相关性的调制中起作用。

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