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Mismatch negativity (MMN) elicited by abstract regularity violations in two concurrent auditory streams

机译:在两个并发听觉流中抽象规律性违规引起的不匹配负性(MMN)

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摘要

The study investigated whether violations of abstract regularities in two parallel auditory stimulus streams can elicit the MMN (mismatch negativity) event-related potential. Tone pairs from a low (220–392 Hz) and a high (1319–2349 Hz) stream were delivered in an alternating order either at a fast or a slow pace. With the slow pace, the pairs were perceptually heard as a single stream obeying an alternating low pair-high pair pattern, whereas with the fast pace, an experience of two separate auditory streams, low and high, emerged. Both streams contained standard and deviant pairs. The standard pairs were either in both streams ascending in the direction of the within-pair pitch change or in the one stream ascending and in the other stream descending. The direction of the deviant pairs was opposite to that of the same-stream standard pairs. The participant's task was either to ignore the auditory stimuli or to detect the deviant pairs in the designated stream. The deviant pairs elicited an MMN both when the directions of the standard pairs in the two streams were the same or when they were opposite. The MMN was present irrespective of the pace of stimulation. The results indicate that the preattentive brain mechanisms, reflected by the MMN, can extract abstract regularities from two concurrent streams even when the regularities are opposite in the two streams, and independently of whether there perceptually exists only one stimulus stream or two segregated streams. These results demonstrate the brain's remarkable ability to model various regularities embedded in the auditory environment and update the models when the regularities are violated. The observed phenomena can be related to several aspects of auditory information processing, e.g., music and speech perception and different forms of attention.
机译:这项研究调查了在两个平行听觉刺激流中违反抽象规律是否会引起MMN(失配负性)事件相关电位。低频(220–392 Hz)和高频(1319–2349 Hz)流中的音调对以快速或慢速的交替顺序传送。节奏缓慢时,在听觉上听见成对的声音像是一条单一的声音流,遵循交替的低音对高音对模式,而节奏很快时,出现了两个单独的听觉流,即低和高。这两个流都包含标准对和异常对。标准对在两个流中都沿对内音高变化的方向上升,或者在一个流中上升而在另一流中下降。偏离对的方向与相同流标准对的方向相反。参与者的任务是忽略听觉刺激或检测指定流中的异常对。当两个流中标准对的方向相同或相反时,异常对将引发MMN。 MMN的存在与刺激的步伐无关。结果表明,MMN反映出的注意力不集中的大脑机制可以从两个并发流中提取抽象规则,即使两个规则流中的规则性相反,并且与在感知上仅存在一个刺激流还是两个分离流无关。这些结果表明,大脑具有出色的能力来对听觉环境中嵌入的各种规律进行建模,并在违反规律时更新模型。观察到的现象可能与听觉信息处理的多个方面有关,例如音乐和语音感知以及不同形式的注意力。

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