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绝对音高对噪声环境下听觉感知时大脑激活和功能连接的影响。

Effects of absolute pitch on brain activation and functional connectivity during hearing-in-noise perception.

机构信息

Institute of Cognitive Neuroscience, National Central University, Taoyuan City, Taiwan.

Institute of Cognitive Neuroscience, National Central University, Taoyuan City, Taiwan; Cognitive Intelligence and Precision Healthcare Center, National Central University, Taoyuan City, Taiwan.

出版信息

Cortex. 2024 May;174:1-18. doi: 10.1016/j.cortex.2024.02.011. Epub 2024 Feb 28.

Abstract

Hearing-in-noise (HIN) ability is crucial in speech and music communication. Recent evidence suggests that absolute pitch (AP), the ability to identify isolated musical notes, is associated with HIN benefits. A theoretical account postulates a link between AP ability and neural network indices of segregation. However, how AP ability modulates the brain activation and functional connectivity underlying HIN perception remains unclear. Here we used functional magnetic resonance imaging to contrast brain responses among a sample (n = 45) comprising 15 AP musicians, 15 non-AP musicians, and 15 non-musicians in perceiving Mandarin speech and melody targets under varying signal-to-noise ratios (SNRs: No-Noise, 0, -9 dB). Results reveal that AP musicians exhibited increased activation in auditory and superior frontal regions across both HIN domains (music and speech), irrespective of noise levels. Notably, substantially higher sensorimotor activation was found in AP musicians when the target was music compared to speech. Furthermore, we examined AP effects on neural connectivity using psychophysiological interaction analysis with the auditory cortex as the seed region. AP musicians showed decreased functional connectivity with the sensorimotor and middle frontal gyrus compared to non-AP musicians. Crucially, AP differentially affected connectivity with parietal and frontal brain regions depending on the HIN domain being music or speech. These findings suggest that AP plays a critical role in HIN perception, manifested by increased activation and functional independence between auditory and sensorimotor regions for perceiving music and speech streams.

摘要

听力噪声比(HIN)能力在言语和音乐交流中至关重要。最近的证据表明,绝对音高(AP),即识别孤立音符的能力,与 HIN 益处有关。一种理论假设 AP 能力与分离的神经网络指数之间存在联系。然而,AP 能力如何调节 HIN 感知的大脑激活和功能连接仍然不清楚。在这里,我们使用功能磁共振成像技术,比较了包含 15 名 AP 音乐家、15 名非 AP 音乐家和 15 名非音乐家的样本(n=45)在感知普通话语音和旋律目标时的大脑反应,这些目标在不同的信噪比(SNR:无噪声、0、-9dB)下。结果表明,AP 音乐家在听觉和额上区域表现出更强的激活,这两个 HIN 领域(音乐和言语)都不受噪声水平的影响。值得注意的是,当目标是音乐时,AP 音乐家的感觉运动区的激活明显高于言语。此外,我们使用听觉皮层作为种子区域,通过心理生理交互分析来研究 AP 对神经连接的影响。与非 AP 音乐家相比,AP 音乐家的感觉运动区和额中回的功能连接减少。至关重要的是,AP 根据 HIN 域是音乐还是言语,对与顶叶和额叶脑区的连接产生不同的影响。这些发现表明,AP 在 HIN 感知中起着关键作用,表现在感知音乐和语音流时,听觉和感觉运动区域之间的激活增加和功能独立性增强。

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