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探索频谱细节和语调轮廓在言语可懂度中的作用:一项功能磁共振成像研究。

Exploring the roles of spectral detail and intonation contour in speech intelligibility: an FMRI study.

作者信息

Kyong Jeong S, Scott Sophie K, Rosen Stuart, Howe Timothy B, Agnew Zarinah K, McGettigan Carolyn

机构信息

University College London.

出版信息

J Cogn Neurosci. 2014 Aug;26(8):1748-63. doi: 10.1162/jocn_a_00583. Epub 2014 Feb 25.

Abstract

The melodic contour of speech forms an important perceptual aspect of tonal and nontonal languages and an important limiting factor on the intelligibility of speech heard through a cochlear implant. Previous work exploring the neural correlates of speech comprehension identified a left-dominant pathway in the temporal lobes supporting the extraction of an intelligible linguistic message, whereas the right anterior temporal lobe showed an overall preference for signals clearly conveying dynamic pitch information [Johnsrude, I. S., Penhune, V. B., & Zatorre, R. J. Functional specificity in the right human auditory cortex for perceiving pitch direction. Brain, 123, 155-163, 2000; Scott, S. K., Blank, C. C., Rosen, S., & Wise, R. J. Identification of a pathway for intelligible speech in the left temporal lobe. Brain, 123, 2400-2406, 2000]. The current study combined modulations of overall intelligibility (through vocoding and spectral inversion) with a manipulation of pitch contour (normal vs. falling) to investigate the processing of spoken sentences in functional MRI. Our overall findings replicate and extend those of Scott et al. [Scott, S. K., Blank, C. C., Rosen, S., & Wise, R. J. Identification of a pathway for intelligible speech in the left temporal lobe. Brain, 123, 2400-2406, 2000], where greater sentence intelligibility was predominately associated with increased activity in the left STS, and the greatest response to normal sentence melody was found in right superior temporal gyrus. These data suggest a spatial distinction between brain areas associated with intelligibility and those involved in the processing of dynamic pitch information in speech. By including a set of complexity-matched unintelligible conditions created by spectral inversion, this is additionally the first study reporting a fully factorial exploration of spectrotemporal complexity and spectral inversion as they relate to the neural processing of speech intelligibility. Perhaps surprisingly, there was little evidence for an interaction between the two factors-we discuss the implications for the processing of sound and speech in the dorsolateral temporal lobes.

摘要

言语的旋律轮廓构成了声调语言和非声调语言重要的感知方面,也是通过人工耳蜗听到的言语可懂度的一个重要限制因素。先前探索言语理解神经关联的研究确定了颞叶中一条以左侧为主导的通路,该通路支持可理解语言信息的提取,而右侧颞叶前部总体上更倾向于清晰传达动态音高信息的信号[约翰斯鲁德,I.S.,彭胡恩,V.B.,&扎托雷,R.J.右颞叶听觉皮层在感知音高方向上的功能特异性。《大脑》,123卷,155 - 163页,2000年;斯科特,S.K.,布兰克,C.C.,罗森,S.,&怀斯,R.J.在左颞叶中识别出一条可理解言语的通路。《大脑》,123卷,2400 - 2406页,2000年]。本研究将整体可懂度的调制(通过声码转换和频谱反转)与音高轮廓的操作(正常与下降)相结合,以在功能磁共振成像中研究口语句子的处理。我们的总体研究结果重复并扩展了斯科特等人的研究结果[斯科特,S.K.,布兰克,C.C.,罗森,S.,&怀斯,R.J.在左颞叶中识别出一条可理解言语的通路。《大脑》,123卷,2400 - 2406页,2000年],其中句子可懂度越高主要与左颞上回的活动增加相关,并且在右颞上回中发现对正常句子旋律的反应最强。这些数据表明,与可懂度相关的脑区和参与言语中动态音高信息处理的脑区在空间上存在差异。通过纳入一组由频谱反转产生的复杂度匹配的不可理解条件,这也是第一项报告对频谱 - 时间复杂度和频谱反转与言语可懂度神经处理之间关系进行全因子探索的研究。也许令人惊讶的是,几乎没有证据表明这两个因素之间存在相互作用——我们讨论了其对背外侧颞叶中声音和言语处理的影响。

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