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Rhythmic and melodic deviations in musical sequences recruit different cortical areas for mismatch detection

机译:音乐序列中的节奏和旋律偏差会招募不同的皮质区域以进行失配检测

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摘要

The mismatch negativity (MMN), an event-related potential (ERP) representing the violation of an acoustic regularity, is considered as a pre-attentive change detection mechanism at the sensory level on the one hand and as a prediction error signal on the other hand, suggesting that bottom-up as well as top-down processes are involved in its generation. Rhythmic and melodic deviations within a musical sequence elicit a MMN in musically trained subjects, indicating that acquired musical expertise leads to better discrimination accuracy of musical material and better predictions about upcoming musical events. Expectation violations to musical material could therefore recruit neural generators that reflect top-down processes that are based on musical knowledge. We describe the neural generators of the musical MMN for rhythmic and melodic material after a short-term sensorimotor-auditory (SA) training. We compare the localization of musical MMN data from two previous MEG studies by applying beamformer analysis. One study focused on the melodic harmonic progression whereas the other study focused on rhythmic progression. The MMN to melodic deviations revealed significant right hemispheric neural activation in the superior temporal gyrus (STG), inferior frontal cortex (IFC), and the superior frontal (SFG) and orbitofrontal (OFG) gyri. IFC and SFG activation was also observed in the left hemisphere. In contrast, beamformer analysis of the data from the rhythm study revealed bilateral activation within the vicinity of auditory cortices and in the inferior parietal lobule (IPL), an area that has recently been implied in temporal processing. We conclude that different cortical networks are activated in the analysis of the temporal and the melodic content of musical material, and discuss these networks in the context of the dual-pathway model of auditory processing.
机译:失配负性(MMN)是表示违反声音规律性的事件相关电位(ERP),一方面被认为是感觉水平上的注意力转移前检测机制,另一方面被认为是预测误差信号提示,自下而上以及自上而下的过程都涉及到它的生成。音乐序列中的节奏和旋律偏差会导致受过音乐训练的受试者进入MMN,这表明获得的音乐专业知识会导致更好地区分音乐材料并更好地预测即将发生的音乐事件。因此,违反音乐材料的期望可能会招募神经生成器,这些神经生成器反映基于音乐知识的自上而下的过程。我们描述了经过短期的感觉运动听觉(SA)训练的音乐MMN的节奏和旋律材料的神经发生器。我们通过应用波束赋形器分析比较了前两次MEG研究中音乐MMN数据的定位。一项研究侧重于旋律和声进行,而另一项研究侧重于节奏性进行。 MMN到旋律偏差显示上颞回(STG),额额下皮质(IFC)以及额额上(SFG)和眶额(OFG)回中有明显的右半球神经激活。在左半球也观察到了IFC和SFG激活。相比之下,对节奏研究数据的波束形成器分析显示,在听觉皮层附近和顶叶小叶(IPL)附近是双侧激活,该区域最近在时间处理中隐含。我们得出的结论是,在分析音乐资料的时间和旋律内容时,会激活不同的皮质网络,并在听觉处理的双路径模型的背景下讨论这些网络。

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