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相对于音色违规,音高句法违规与更大的皮肤电导率变化相关——从皮质-皮质下环路角度看奖励系统的预测作用。

Pitch Syntax Violations Are Linked to Greater Skin Conductance Changes, Relative to Timbral Violations - The Predictive Role of the Reward System in Perspective of Cortico-subcortical Loops.

作者信息

Gorzelańczyk Edward J, Podlipniak Piotr, Walecki Piotr, Karpiński Maciej, Tarnowska Emilia

机构信息

Department of Theoretical Basis of Bio-Medical Sciences and Medical Informatics, Nicolaus Copernicus University Collegium MedicumBydgoszcz, Poland.

Non-Public Health Care Center Sue Ryder HomeBydgoszcz, Poland.

出版信息

Front Psychol. 2017 Apr 18;8:586. doi: 10.3389/fpsyg.2017.00586. eCollection 2017.

Abstract

According to contemporary opinion emotional reactions to syntactic violations are due to surprise as a result of the general mechanism of prediction. The classic view is that, the processing of musical syntax can be explained by activity of the cerebral cortex. However, some recent studies have indicated that subcortical brain structures, including those related to the processing of emotions, are also important during the processing of syntax. In order to check whether emotional reactions play a role in the processing of pitch syntax or are only the result of the general mechanism of prediction, the comparison of skin conductance levels reacting to three types of melodies were recorded. In this study, 28 subjects listened to three types of short melodies prepared in Musical Instrument Digital Interface Standard files (MIDI) - tonally correct, tonally violated (with one out-of-key - i.e., of high information content), and tonally correct but with one note played in a different timbre. The BioSemi ActiveTwo with two passive Nihon Kohden electrodes was used. Skin conductance levels were positively correlated with the presented stimuli (timbral changes and tonal violations). Although changes in skin conductance levels were also observed in response to the change in timbre, the reactions to tonal violations were significantly stronger. Therefore, despite the fact that timbral change is at least as equally unexpected as an out-of-key note, the processing of pitch syntax mainly generates increased activation of the sympathetic part of the autonomic nervous system. These results suggest that the cortico-subcortical loops (especially the anterior cingulate - limbic loop) may play an important role in the processing of musical syntax.

摘要

根据当代观点,对句法违反的情绪反应是由于预测的一般机制所导致的惊讶。经典观点认为,音乐句法的处理可以用脑皮层的活动来解释。然而,最近的一些研究表明,包括与情绪处理相关的那些在内的皮层下脑结构,在句法处理过程中也很重要。为了检验情绪反应在音高句法处理中是否起作用,或者仅仅是预测的一般机制的结果,记录了对三种类型旋律做出反应的皮肤电导水平的比较。在这项研究中,28名受试者听了用乐器数字接口标准文件(MIDI)准备的三种类型的短旋律——音调正确的、音调违反的(有一个音不在调上——即信息含量高),以及音调正确但有一个音符用不同音色演奏的。使用了带有两个无源日本光电电极的BioSemi ActiveTwo。皮肤电导水平与呈现的刺激(音色变化和音调违反)呈正相关。尽管在对音色变化的反应中也观察到了皮肤电导水平的变化,但对音调违反的反应明显更强。因此,尽管音色变化至少与一个不在调上的音符一样出人意料,但音高句法的处理主要会使自主神经系统的交感部分的激活增加。这些结果表明,皮层-皮层下环路(尤其是前扣带回-边缘环路)可能在音乐句法的处理中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dd3/5394172/a4a0db4f9b24/fpsyg-08-00586-g001.jpg

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