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本文引用的文献

1
The effects of tone language experience on pitch processing in the brainstem.声调语言经验对脑干中音调处理的影响。
J Neurolinguistics. 2010 Jan 1;23(1):81-95. doi: 10.1016/j.jneuroling.2009.09.001.
2
Brainstem pitch representation in native speakers of Mandarin is less susceptible to degradation of stimulus temporal regularity.汉语母语者的脑干音高表现较少受到刺激时间规律性下降的影响。
Brain Res. 2010 Feb 8;1313:124-33. doi: 10.1016/j.brainres.2009.11.061. Epub 2009 Dec 2.
3
Cross-domain effects of music and language experience on the representation of pitch in the human auditory brainstem.音乐和语言经验在人类听觉脑干中对音高表现的跨领域影响。
J Cogn Neurosci. 2011 Feb;23(2):425-34. doi: 10.1162/jocn.2009.21362. Epub 2009 Nov 19.
4
Learning to encode timing: mechanisms of plasticity in the auditory brainstem.学习编码时间:听觉脑干中的可塑性机制
Neuron. 2009 May 28;62(4):463-9. doi: 10.1016/j.neuron.2009.05.002.
5
The role of the auditory brainstem in processing linguistically-relevant pitch patterns.听觉脑干在处理与语言相关的音高模式中的作用。
Brain Lang. 2009 Sep;110(3):135-48. doi: 10.1016/j.bandl.2009.03.005. Epub 2009 Apr 14.
6
Experience-dependent neural representation of dynamic pitch in the brainstem.脑干中动态音高的经验依赖性神经表征。
Neuroreport. 2009 Mar 4;20(4):408-13. doi: 10.1097/WNR.0b013e3283263000.
7
The neurobiology of sound-specific auditory plasticity: a core neural circuit.声音特异性听觉可塑性的神经生物学:一个核心神经回路。
Neurosci Biobehav Rev. 2009 Sep;33(8):1178-84. doi: 10.1016/j.neubiorev.2008.10.006. Epub 2008 Oct 25.
8
Experience-dependent enhancement of linguistic pitch representation in the brainstem is not specific to a speech context.脑干中语言音调表征的经验依赖性增强并非特定于言语情境。
J Cogn Neurosci. 2009 Jun;21(6):1092-105. doi: 10.1162/jocn.2009.21077.
9
Pitch encoding in speech and nonspeech contexts in the human auditory brainstem.人类听觉脑干中语音和非语音环境下的音高编码
Neuroreport. 2008 Jul 16;19(11):1163-7. doi: 10.1097/WNR.0b013e3283088d31.
10
Applications of static and dynamic iterated rippled noise to evaluate pitch encoding in the human auditory brainstem.静态和动态迭代波纹噪声在评估人类听觉脑干音调编码中的应用。
IEEE Trans Biomed Eng. 2008 Jan;55(1):281-7. doi: 10.1109/TBME.2007.896592.

脑内依赖语言的基频编码优势不仅局限于自然言语中出现的频率变化率。

Language-dependent pitch encoding advantage in the brainstem is not limited to acceleration rates that occur in natural speech.

机构信息

Department of Speech Language Hearing Sciences, Purdue University, USA.

出版信息

Brain Lang. 2010 Sep;114(3):193-8. doi: 10.1016/j.bandl.2010.05.004. Epub 2010 Jun 8.

DOI:10.1016/j.bandl.2010.05.004
PMID:20570340
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2913296/
Abstract

Experience-dependent enhancement of neural encoding of pitch in the auditory brainstem has been observed for only specific portions of native pitch contours exhibiting high rates of pitch acceleration, irrespective of speech or nonspeech contexts. This experiment allows us to determine whether this language-dependent advantage transfers to acceleration rates that extend beyond the pitch range of natural speech. Brainstem frequency-following responses (FFRs) were recorded from Chinese and English participants in response to four, 250-ms dynamic click-train stimuli with different rates of pitch acceleration. The maximum pitch acceleration rates in a given stimulus ranged from low (0.3Hz/ms; Mandarin Tone 2) to high (2.7Hz/ms; 2 octaves). Pitch strength measurements were computed from the FFRs using autocorrelation algorithms with an analysis window centered at the point of maximum pitch acceleration in each stimulus. Between-group comparisons of pitch strength revealed that Chinese exhibit more robust pitch representation than English across all four acceleration rates. Regardless of language group, pitch strength was greater in response to acceleration rates within or proximal to natural speech relative to those beyond its range. Though both groups showed decreasing pitch strength with increasing acceleration rates, pitch representations of the Chinese group were more resistant to degradation. FFR spectral data were complementary across acceleration rates. These findings demonstrate that perceptually salient pitch cues associated with lexical tone influence brainstem pitch extraction not only in the speech domain, but also in auditory signals that clearly fall outside the range of dynamic pitch that a native listener is exposed to.

摘要

仅在特定部分的母语音高轮廓上观察到与经验相关的听觉脑干中音高编码的增强,这些部分具有较高的音高加速度率,而与语音或非语音环境无关。这个实验使我们能够确定这种依赖于语言的优势是否会转移到超出自然语音音高范围的加速度率。我们从中国和英语参与者记录了脑干频率跟随反应(FFR),以响应四个具有不同音高加速度率的 250-ms 动态点击训练刺激。给定刺激中的最大音高加速度率从低(0.3Hz/ms;普通话 2 声)到高(2.7Hz/ms;2 个八度)。使用自相关算法从 FFR 中计算音强测量值,分析窗口位于每个刺激中最大音高加速度点的中心。音强的组间比较表明,无论语言群体如何,与超出其范围的加速度率相比,汉语在所有四个加速度率下都具有更强的音高表示。无论语言群体如何,与超出其范围的加速度率相比,在自然语音或接近自然语音的加速度率下,音强更大。尽管两组的音强随加速度率的增加而降低,但汉语组的音高表示更能抵抗退化。FFR 光谱数据在加速度率上是互补的。这些发现表明,与词汇音相关的感知上明显的音高提示不仅在语音领域,而且在明显超出母语听众所接触的动态音高范围的听觉信号中,也会影响脑干的音高提取。