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fMRI Mapping of Brain Activity Associated with the Vocal Production of Consonant and Dissonant Intervals

机译:与共振和非共振间隔的人声产生相关的大脑活动的功能磁共振成像图

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摘要

The neural correlates of consonance and dissonance perception have been widely studied, but not the neural correlates of consonance and dissonance production. The most straightforward manner of musical production is singing, but, from an imaging perspective, it still presents more challenges than listening because it involves motor activity. The accurate singing of musical intervals requires integration between auditory feedback processing and vocal motor control in order to correctly produce each note. This protocol presents a method that permits the monitoring of neural activations associated with the vocal production of consonant and dissonant intervals. Four musical intervals, two consonant and two dissonant, are used as stimuli, both for an auditory discrimination test and a task that involves first listening to and then reproducing given intervals. Participants, all female vocal students at the conservatory level, were studied using functional Magnetic Resonance Imaging (fMRI) during the performance of the singing task, with the listening task serving as a control condition. In this manner, the activity of both the motor and auditory systems was observed, and a measure of vocal accuracy during the singing task was also obtained. Thus, the protocol can also be used to track activations associated with singing different types of intervals or with singing the required notes more accurately. The results indicate that singing dissonant intervals requires greater participation of the neural mechanisms responsible for the integration of external feedback from the auditory and sensorimotor systems than does singing consonant intervals.
机译:已经广泛研究了谐音和不谐音知觉的神经相关性,但是对谐音和不谐音产生的神经相关性尚未进行广泛的研究。音乐创作最直接的方式是唱歌,但从影像的角度来看,它仍然比听音乐提出更多的挑战,因为它涉及运动。音乐间隔的准确演唱要求听觉反馈处理和声带运动控制之间的集成,以便正确产生每个音符。该协议提出了一种方法,该方法可以监视与辅音和不谐音间隔的声音产生相关的神经激活。四个音乐间隔(两个辅音和两个不谐音)被用作刺激,既用于听觉辨别测试,又用于涉及先聆听然后再现给定间隔的任务。参加者,所有音乐学院的女声乐学生,在执行唱歌任务时都使用功能性磁共振成像(fMRI)进行了研究,以听音任务为控制条件。以这种方式,观察了运动系统和听觉系统的活动,并且还获得了唱歌任务期间的声音准确性的量度。因此,该协议还可以用于跟踪与歌唱不同类型的间隔或与更准确地歌唱所需音符相关的激活。结果表明,与唱歌辅音间隔相比,唱歌辅音间隔需要更多的神经机制参与,这些神经机制负责整合来自听觉和感觉运动系统的外部反馈。

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