Yu Xide, Liu Tao, Gao Dingguo
Department of Psychology, Sun Yat-Sen University, No. 135 Xingang Xi Road, Guangzhou 510275, China.
Behav Neurol. 2015;2015:469508. doi: 10.1155/2015/469508. Epub 2015 Oct 4.
This paper reviews music research using Mismatch Negativity (MMN). MMN is a deviation-specific component of auditory event-related potential (EPR), which detects a deviation between a sound and an internal representation (e.g., memory trace). Recent studies have expanded the notion and the paradigms of MMN to higher-order music processing such as those involving short melodies, harmony chord, and music syntax. In this vein, we firstly reviewed the evolution of MMN from sound to music and then mainly compared the differences of MMN features between musicians and nonmusicians, followed by the discussion of the potential roles of the training effect and the natural exposure in MMN. Since MMN can serve as an index of neural plasticity, it thus can be widely used in clinical and other applied areas, such as detecting music preference in newborns or assessing wholeness of central auditory system of hearing illness. Finally, we pointed out some open questions and further directions. Current music perception research using MMN has mainly focused on relatively low hierarchical structure of music perception. To fully understand the neural substrates underlying processing of regularities in music, it is important and beneficial to combine MMN with other experimental paradigms such as early right-anterior negativity (ERAN).
本文回顾了使用失匹配负波(MMN)的音乐研究。MMN是听觉事件相关电位(EPR)的一种特定偏差成分,它能检测声音与内部表征(如记忆痕迹)之间的偏差。最近的研究已将MMN的概念和范式扩展到更高阶的音乐处理,如涉及短旋律、和声和弦及音乐句法的处理。在此背景下,我们首先回顾了MMN从声音到音乐的演变,然后主要比较了音乐家和非音乐家之间MMN特征的差异,接着讨论了训练效应和自然接触在MMN中的潜在作用。由于MMN可作为神经可塑性的指标,因此它可广泛应用于临床及其他应用领域,如检测新生儿的音乐偏好或评估听力疾病患者中枢听觉系统的完整性。最后,我们指出了一些未解决的问题和进一步的研究方向。目前使用MMN的音乐感知研究主要集中在音乐感知的相对较低层次结构上。为了全面理解音乐规律处理背后的神经基础,将MMN与其他实验范式(如早期右前负波(ERAN))相结合是重要且有益的。