Treder M S, Purwins H, Miklody D, Sturm I, Blankertz B
Neurotechnology Group, Technische Universität Berlin, Berlin, Germany. Bernstein Focus: Neurotechnology, Berlin, Germany.
J Neural Eng. 2014 Apr;11(2):026009. doi: 10.1088/1741-2560/11/2/026009. Epub 2014 Mar 10.
Polyphonic music (music consisting of several instruments playing in parallel) is an intuitive way of embedding multiple information streams. The different instruments in a musical piece form concurrent information streams that seamlessly integrate into a coherent and hedonistically appealing entity. Here, we explore polyphonic music as a novel stimulation approach for use in a brain-computer interface.
In a multi-streamed oddball experiment, we had participants shift selective attention to one out of three different instruments in music audio clips. Each instrument formed an oddball stream with its own specific standard stimuli (a repetitive musical pattern) and oddballs (deviating musical pattern).
Contrasting attended versus unattended instruments, ERP analysis shows subject- and instrument-specific responses including P300 and early auditory components. The attended instrument can be classified offline with a mean accuracy of 91% across 11 participants.
This is a proof of concept that attention paid to a particular instrument in polyphonic music can be inferred from ongoing EEG, a finding that is potentially relevant for both brain-computer interface and music research.
复调音乐(由多种乐器同时演奏的音乐)是一种直观的嵌入多个信息流的方式。一首乐曲中的不同乐器形成并发的信息流,这些信息流无缝整合为一个连贯且具有享乐主义吸引力的整体。在此,我们探索将复调音乐作为一种用于脑机接口的新型刺激方法。
在一个多流异常刺激实验中,我们让参与者将选择性注意力转移到音乐音频片段中的三种不同乐器之一上。每种乐器都形成一个具有自身特定标准刺激(重复的音乐模式)和异常刺激(偏离的音乐模式)的异常刺激流。
对比被关注与未被关注的乐器,事件相关电位(ERP)分析显示了特定于受试者和乐器的反应,包括P300和早期听觉成分。在11名参与者中,被关注的乐器离线分类的平均准确率为91%。
这是一个概念验证,即可以从正在进行的脑电图中推断出对复调音乐中特定乐器的注意力,这一发现对脑机接口和音乐研究都可能具有相关性。