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Effects of musical training on sound pattern processing in high-school students.

机译:音乐训练对高中生声音模式处理的影响。

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OBJECTIVE: Recognizing melody in music involves detection of both the pitch intervals and the silence between sequentially presented sounds. This study tested the hypothesis that active musical training in adolescents facilitates the ability to passively detect sequential sound patterns compared to musically non-trained age-matched peers. METHODS: Twenty adolescents, aged 15-18 years, were divided into groups according to their musical training and current experience. A fixed order tone pattern was presented at various stimulus rates while electroencephalogram was recorded. The influence of musical training on passive auditory processing of the sound patterns was assessed using components of event-related brain potentials (ERPs). RESULTS: The mismatch negativity (MMN) ERP component was elicited in different stimulus onset asynchrony (SOA) conditions in non-musicians than musicians, indicating that musically active adolescents were able to detect sound patterns across longer time intervals than age-matched peers. CONCLUSIONS: Musical training facilitates detection of auditory patterns, allowing the ability to automatically recognize sequential sound patterns over longer time periods than non-musical counterparts.
机译:目的:识别音乐中的旋律包括检测音高间隔和顺序呈现的声音之间的静音。这项研究检验了以下假设:与未接受音乐训练的年龄相匹配的同龄人相比,青少年进行积极的音乐训练有助于被动地检测顺序声音模式的能力。方法:根据他们的音乐训练和目前的经验,将20名15-18岁的青少年分为几组。在记录脑电图的同时,以各种刺激率呈现固定顺序的音调模式。使用与事件相关的脑电势(ERP)的组件评估了音乐训练对声音模式的被动听觉处理的影响。结果:与音乐家相比,非音乐家在与非音乐家不同的刺激发作异步(SOA)条件下诱发了失配负(MMN)ERP组件,这表明与年龄匹配的同龄人相比,活跃的青少年能够在更长的时间间隔内检测到声音模式。结论:音乐训练有助于听觉模式的检测,与非音乐对应相比,能够在更长的时间内自动识别连续的声音模式。

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