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本文引用的文献

1
Hearing illusory sounds in noise: the timing of sensory-perceptual transformations in auditory cortex.在噪声中听到虚幻声音:听觉皮层中感觉-知觉转换的时机
Neuron. 2009 Nov 25;64(4):550-61. doi: 10.1016/j.neuron.2009.10.016.
2
Hemispheric asymmetry in mid and long latency neuromagnetic responses to single clicks.对单次点击的中长潜伏期神经磁反应的半球不对称性。
Hear Res. 2009 Nov;257(1-2):41-52. doi: 10.1016/j.heares.2009.07.010. Epub 2009 Aug 6.
3
Spike-phase coding boosts and stabilizes information carried by spatial and temporal spike patterns.峰值相位编码增强并稳定了由空间和时间峰值模式携带的信息。
Neuron. 2009 Feb 26;61(4):597-608. doi: 10.1016/j.neuron.2009.01.008.
4
Evoked potential variability.诱发电位变异性
J Neurosci Methods. 2009 Mar 30;178(1):228-36. doi: 10.1016/j.jneumeth.2008.11.021. Epub 2008 Dec 3.
5
Auditory-evoked potentials to frequency increase and decrease of high- and low-frequency tones.针对高频和低频音调频率增加及降低的听觉诱发电位。
Clin Neurophysiol. 2009 Feb;120(2):360-73. doi: 10.1016/j.clinph.2008.10.158. Epub 2008 Dec 12.
6
Human cortical responses to the speech envelope.人类皮层对言语包络的反应。
Ear Hear. 2008 Apr;29(2):139-57. doi: 10.1097/aud.0b013e31816453dc.
7
Right-hemisphere auditory cortex is dominant for coding syllable patterns in speech.右半球听觉皮层在语音音节模式编码中占主导地位。
J Neurosci. 2008 Apr 9;28(15):3958-65. doi: 10.1523/JNEUROSCI.0187-08.2008.
8
Denoising based on time-shift PCA.基于时移主成分分析的去噪
J Neurosci Methods. 2007 Sep 30;165(2):297-305. doi: 10.1016/j.jneumeth.2007.06.003. Epub 2007 Jun 8.
9
Exploiting nonlinear recurrence and fractal scaling properties for voice disorder detection.利用非线性递归和分形标度特性进行语音障碍检测。
Biomed Eng Online. 2007 Jun 26;6:23. doi: 10.1186/1475-925X-6-23.
10
Phase patterns of neuronal responses reliably discriminate speech in human auditory cortex.神经元反应的相位模式可可靠地辨别人类听觉皮层中的语音。
Neuron. 2007 Jun 21;54(6):1001-10. doi: 10.1016/j.neuron.2007.06.004.

基于神经元反应相位模式的语音刺激辨别取决于声学但不依赖于理解。

Discrimination of speech stimuli based on neuronal response phase patterns depends on acoustics but not comprehension.

机构信息

Department of Linguistics, University of Maryland, College Park, MD 20742, USA.

出版信息

J Neurophysiol. 2010 Nov;104(5):2500-11. doi: 10.1152/jn.00251.2010. Epub 2010 May 19.

DOI:10.1152/jn.00251.2010
PMID:20484530
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2997028/
Abstract

Speech stimuli give rise to neural activity in the listener that can be observed as waveforms using magnetoencephalography. Although waveforms vary greatly from trial to trial due to activity unrelated to the stimulus, it has been demonstrated that spoken sentences can be discriminated based on theta-band (3-7 Hz) phase patterns in single-trial response waveforms. Furthermore, manipulations of the speech signal envelope and fine structure that reduced intelligibility were found to produce correlated reductions in discrimination performance, suggesting a relationship between theta-band phase patterns and speech comprehension. This study investigates the nature of this relationship, hypothesizing that theta-band phase patterns primarily reflect cortical processing of low-frequency (<40 Hz) modulations present in the acoustic signal and required for intelligibility, rather than processing exclusively related to comprehension (e.g., lexical, syntactic, semantic). Using stimuli that are quite similar to normal spoken sentences in terms of low-frequency modulation characteristics but are unintelligible (i.e., their time-inverted counterparts), we find that discrimination performance based on theta-band phase patterns is equal for both types of stimuli. Consistent with earlier findings, we also observe that whereas theta-band phase patterns differ across stimuli, power patterns do not. We use a simulation model of the single-trial response to spoken sentence stimuli to demonstrate that phase-locked responses to low-frequency modulations of the acoustic signal can account not only for the phase but also for the power results. The simulation offers insight into the interpretation of the empirical results with respect to phase-resetting and power-enhancement models of the evoked response.

摘要

言语刺激会在听者中引起神经活动,这些活动可以通过脑磁图(MEG)观察到作为波形。尽管由于与刺激无关的活动,波形在每次试验中都有很大的变化,但已经证明可以根据单trial 响应波形中的θ频段(3-7 Hz)相位模式来区分口语句子。此外,发现对言语信号包络和精细结构的操纵降低了可理解性,从而导致了辨别性能的相关降低,这表明θ频段相位模式与言语理解之间存在关系。本研究探讨了这种关系的本质,假设θ频段相位模式主要反映了皮层对言语信号中存在的低频(<40 Hz)调制的处理,而这些调制对于可理解性是必需的,而不是专门与理解相关的处理(例如,词汇,句法,语义)。使用与低频调制特征非常相似的刺激,但不可理解(即,它们的时间反转对应物),我们发现基于θ频段相位模式的辨别性能对于这两种类型的刺激是相等的。与早期发现一致,我们还观察到,尽管θ频段相位模式在刺激之间有所不同,但功率模式却没有。我们使用单trial 对口语句子刺激的响应的模拟模型来证明,对言语信号低频调制的锁相响应不仅可以解释相位,还可以解释功率结果。该模拟提供了有关相位重置和诱发响应的功率增强模型的经验结果的解释的见解。