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双模式患者的音乐情感感知:音乐模式和节奏线索的相对权重

Musical Emotion Perception in Bimodal Patients: Relative Weighting of Musical Mode and Tempo Cues.

作者信息

D'Onofrio Kristen L, Caldwell Meredith, Limb Charles, Smith Spencer, Kessler David M, Gifford René H

机构信息

Cochlear Implant Research Laboratory, Department of Hearing and Speech Sciences, Vanderbilt University, Nashville, TN, United States.

Vanderbilt University Medical Center, Nashville, TN, United States.

出版信息

Front Neurosci. 2020 Feb 26;14:114. doi: 10.3389/fnins.2020.00114. eCollection 2020.

Abstract

Several cues are used to convey musical emotion, the two primary being musical mode and musical tempo. Specifically, major and minor modes tend to be associated with positive and negative valence, respectively, and songs at fast tempi have been associated with more positive valence compared to songs at slow tempi (Balkwill and Thompson, 1999; Webster and Weir, 2005). In Experiment I, we examined the relative weighting of musical tempo and musical mode among adult cochlear implant (CI) users combining electric and contralateral acoustic stimulation, or "bimodal" hearing. Our primary hypothesis was that bimodal listeners would utilize both tempo and mode cues in their musical emotion judgments in a manner similar to normal-hearing listeners. Our secondary hypothesis was that low-frequency (LF) spectral resolution in the non-implanted ear, as quantified via psychophysical tuning curves (PTCs) at 262 and 440 Hz, would be significantly correlated with degree of bimodal benefit for musical emotion perception. In Experiment II, we investigated across-channel spectral resolution using a spectral modulation detection (SMD) task and neural representation of temporal fine structure via the frequency following response (FFR) for a 170-ms /da/ stimulus. Results indicate that CI-alone performance was driven almost exclusively by tempo cues, whereas bimodal listening demonstrated use of both tempo and mode. Additionally, bimodal benefit for musical emotion perception may be correlated with spectral resolution in the non-implanted ear via SMD, as well as neural representation of 0 amplitude via FFR - though further study with a larger sample size is warranted. Thus, contralateral acoustic hearing can offer significant benefit for musical emotion perception, and the degree of benefit may be dependent upon spectral resolution of the non-implanted ear.

摘要

有几种线索可用于传达音乐情感,其中两个主要线索是音乐调式和音乐节奏。具体而言,大调式和小调式往往分别与积极和消极的情感效价相关联,并且与慢节奏的歌曲相比,快节奏的歌曲与更积极的情感效价相关联(巴尔克威尔和汤普森,1999年;韦伯斯特和韦尔,2005年)。在实验一中,我们研究了成年人工耳蜗(CI)使用者在结合电刺激和对侧声刺激或“双耳双模”听力时,音乐节奏和音乐调式的相对权重。我们的主要假设是,双耳双模聆听者在音乐情感判断中会以与正常听力聆听者相似的方式利用节奏和调式线索。我们的次要假设是,通过262和440赫兹的心理物理调谐曲线(PTC)量化的未植入耳的低频(LF)频谱分辨率,将与音乐情感感知的双耳双模益处程度显著相关。在实验二中,我们使用频谱调制检测(SMD)任务研究了跨通道频谱分辨率,并通过对170毫秒/da/刺激的频率跟随反应(FFR)研究了时间精细结构的神经表征。结果表明,仅使用人工耳蜗的表现几乎完全由节奏线索驱动,而双耳双模聆听则显示出对节奏和调式的利用。此外,音乐情感感知的双耳双模益处可能通过SMD与未植入耳的频谱分辨率相关,以及通过FFR与0振幅的神经表征相关——尽管需要用更大的样本量进行进一步研究。因此,对侧声觉听力可以为音乐情感感知提供显著益处,并且益处程度可能取决于未植入耳的频谱分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4261/7054459/1103c177f2d2/fnins-14-00114-g001.jpg

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