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Transient and sustained processing of musical consonance in auditory cortex and the effect of musicality

机译:听觉皮层音乐和谐的暂缓和持续加工及音乐效果

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In recent years, electroencephalography and magnetoencephalography (MEG) have both been used to investigate the response in human auditory cortex to musical sounds that are perceived as consonant or dissonant. These studies have typically focused on the transient components of the physiological activity at sound onset, specifically, the N1 wave of the auditory evoked potential and the auditory evoked field, respectively. Unfortunately, the morphology of the N1 wave is confounded by the prominent neural response to energy onset at stimulus onset. It is also the case that the perception of pitch is not limited to sound onset; the perception lasts as long as the note producing it. This suggests that consonance studies should also consider the sustained activity that appears after the transient components die away. The current MEG study shows how energy-balanced sounds can focus the response waves on the consonance-dissonance distinction rather than energy changes and how source modeling techniques can be used to measure the sustained field associated with extended consonant and dissonant sounds. The study shows that musical dyads evoke distinct transient and sustained neuromagnetic responses in auditory cortex. The form of the response depends on both whether the dyads are consonant or dissonant and whether the listeners are musical or nonmusical. The results also show that auditory cortex requires more time for the early transient processing of dissonant dyads than it does for consonant dyads and that the continuous representation of temporal regularity in auditory cortex might be modulated by processes beyond auditory cortex.
机译:近年来,脑电图和磁性脑图(MEG)已被用来调查人类听觉皮层对被视为辅音或消除术的音乐声音的反应。这些研究通常集中在声音发作时的生理活性的瞬态组分上,具体而言,分别是听觉诱发潜力的N1波和听觉诱发的田间。不幸的是,N1波的形态被刺激发作的突出神经响应对能量发作的突出神经响应。还有情况下,音调的感知不限于声音发作;感知持续只要备注产生它。这表明同理研究还应考虑瞬态成分消失后出现的持续活动。目前的MEG研究表明了能量平衡的声音如何将响应波集中在和谐 - 不分散区别,而不是能量变化以及如何使用源建模技术来测量与扩展辅音和不和谐声音相关的持续场。该研究表明,音乐二元在听觉皮层中唤起明显的短暂性和持续的神经磁反应。响应的形式取决于DYADS是否是辅音或不和谐,以及听众是否是音乐或非态度。结果还表明,听觉皮质需要更多时间才能为异常二元的早期瞬态加工而不是用于辅音,并且听觉皮层中的时间规律的连续表示可能会被视听皮层的流程调制。

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