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Differential processing of terminal tone parts within structured and non-structured tones.

机译:在结构化和非结构化音调中对终端音调部分进行差分处理。

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摘要

Recent studies utilizing the mismatch negativity (MMN) event-related potential (ERP) revealed that when a repetitive sequence of sinusoidal tones is presented, the occasional insertion of a short deviation into some of the tones leads to the elicitation of an MMN only if it occurs during the initial 300ms, but not beyond. In contrast, deviations occurring in speech sounds elicit MMN even beyond 300ms. We conducted two experiments to resolve this conflict. We hypothesised that an additional transient within an otherwise unstructured tone may overcome this limitation. First, we tested for MMN to a deviance at the terminal part of a 650ms tone which did or did not contain a gap. Only when the tone included the gap, MMN was obtained. Second, we compared the gap condition with two noise conditions, in which the gap was replaced by modulated white noise. The noise conditions differed with respect to the saliency of the perceived interruption of the tone. In all three conditions, MMN was elicited. These results demonstrate that structuring a sinusoidal tone by a gap or a noise interval is sufficient to regain MMN. It is suggested that the introduction of an additional transient triggers a new integration window overcoming the temporal constraints of automatic tone representation. This resolves the seeming contradiction between MMN studies using tonal and speech sounds.
机译:最近利用失配负(MMN)事件相关电位(ERP)进行的研究表明,当呈现正弦音调的重复序列时,偶尔在某些音调中插入短偏差会导致MMN的诱发,发生在最初的300毫秒内,但不超过此时间。相反,语音中出现的偏差甚至会导致300毫秒以上的MMN。我们进行了两个实验来解决此冲突。我们假设在其他情况下非结构化的音调内的其他瞬态可以克服此限制。首先,我们在650ms音调的终端部分测试了MMN是否有偏差,该间隙是否包含间隙。仅当音调包含间隙时,才获得MMN。其次,我们将间隙条件与两个噪声条件进行了比较,其中间隙被调制的白噪声代替。噪声条件在感知到的音调中断的显着性方面有所不同。在所有这三种情况下,都会引发MMN。这些结果表明,通过间隙或噪声间隔构造正弦音调足以恢复MMN。建议引入额外的瞬态触发新的积分窗口,以克服自动音调表示的时间限制。这解决了使用音调和语音的MMN研究之间的看似矛盾。

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