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本文引用的文献

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Functional MRI of the zebra finch brain during song stimulation suggests a lateralized response topography.在歌曲刺激期间对斑胸草雀大脑进行的功能磁共振成像显示出一种偏侧化的反应地形图。
Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10667-72. doi: 10.1073/pnas.0611515104. Epub 2007 Jun 11.
2
The cortical organization of speech processing.言语处理的皮质组织。
Nat Rev Neurosci. 2007 May;8(5):393-402. doi: 10.1038/nrn2113. Epub 2007 Apr 13.
3
Encoding of illusory continuity in primary auditory cortex.初级听觉皮层中虚幻连续性的编码。
Neuron. 2007 Apr 5;54(1):153-65. doi: 10.1016/j.neuron.2007.02.031.
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The cognitive auditory cortex: task-specificity of stimulus representations.认知听觉皮层:刺激表征的任务特异性
Hear Res. 2007 Jul;229(1-2):213-24. doi: 10.1016/j.heares.2007.01.025. Epub 2007 Feb 12.
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Exploring the extent and function of higher-order auditory cortex in rhesus monkeys.探索恒河猴大脑高阶听觉皮层的范围及功能。
Hear Res. 2007 Jul;229(1-2):14-23. doi: 10.1016/j.heares.2007.01.003. Epub 2007 Jan 16.
6
Working memory specific activity in auditory cortex: potential correlates of sequential processing and maintenance.听觉皮层中工作记忆的特定活动:序列加工与维持的潜在相关因素。
Cereb Cortex. 2007 Nov;17(11):2544-52. doi: 10.1093/cercor/bhl160. Epub 2007 Jan 4.
7
Opposite patterns of hemisphere dominance for early auditory processing of lexical tones and consonants.在声调与辅音的早期听觉加工中,半球优势呈现相反模式。
Proc Natl Acad Sci U S A. 2006 Dec 19;103(51):19558-63. doi: 10.1073/pnas.0607065104. Epub 2006 Dec 11.
8
Multisensory processing via early cortical stages: Connections of the primary auditory cortical field with other sensory systems.通过早期皮质阶段进行的多感官处理:初级听觉皮质区与其他感觉系统的连接。
Neuroscience. 2006 Dec 28;143(4):1065-83. doi: 10.1016/j.neuroscience.2006.08.035. Epub 2006 Oct 4.
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Mechanisms of hemispheric specialization: insights from analyses of connectivity.半球特化的机制:来自连通性分析的见解。
Neuropsychologia. 2007 Jan 28;45(2):209-28. doi: 10.1016/j.neuropsychologia.2006.07.002. Epub 2006 Sep 1.
10
Vervet monkeys and humans show brain asymmetries for processing conspecific vocalizations, but with opposite patterns of laterality.绿猴和人类在处理同种发声时表现出大脑不对称性,但具有相反的偏侧模式。
Proc Biol Sci. 2006 Sep 22;273(1599):2313-8. doi: 10.1098/rspb.2006.3580.

沙鼠对调频音的整体与局部加工:听觉皮层功能偏侧化的动物模型

Global versus local processing of frequency-modulated tones in gerbils: an animal model of lateralized auditory cortex functions.

作者信息

Wetzel Wolfram, Ohl Frank W, Scheich Henning

机构信息

Leibniz Institute for Neurobiology, 39118 Magdeburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2008 May 6;105(18):6753-8. doi: 10.1073/pnas.0707844105. Epub 2008 Apr 24.

DOI:10.1073/pnas.0707844105
PMID:18436653
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2365561/
Abstract

Hemispheric asymmetries of speech and music processing might arise from more basic specializations of left and right auditory cortex (AC). It is not clear, however, whether such asymmetries are unique to humans, i.e., consequences of speech and music, or whether comparable lateralized AC functions exist in nonhuman animals, as evolutionary precursors. Here, we investigated the cortical lateralization of perception of linearly frequency-modulated (FM) tones in gerbils, a rodent species with human-like low-frequency hearing. Using a footshock-reinforced shuttle-box avoidance go/no-go procedure in a total of 178 gerbils, we found that (i) the discrimination of direction of continuous FM (rising versus falling sweeps, 250-ms duration) was impaired by right but not left AC lesions; (ii) the discrimination of direction of segmented FM (50-ms segments, 50-ms silent gaps, total duration 250 ms) was impaired by bilateral but not unilateral AC lesions; (iii) the discrimination of gap durations (10-30 ms) in segmented FM was impaired by left but not right AC lesions. AC lesions before and after training resulted in similar effects. Together, these experiments suggest that right and left AC, even in rodents, use different strategies in analyzing FM stimuli. Thus, the right AC, by using global cues, determines the direction of continuous and segmented FM but cannot discriminate gap durations. The left AC, by using local cues, discriminates gap durations and determines FM direction only when additional segmental information is available.

摘要

言语和音乐处理的半球不对称性可能源于左右听觉皮层(AC)更基本的特化。然而,尚不清楚这种不对称性是否为人类所特有,即言语和音乐的结果,还是在非人类动物中存在类似的偏侧化AC功能,作为进化的前身。在此,我们研究了沙鼠对线性调频(FM)音调感知的皮层偏侧化,沙鼠是一种具有类似人类低频听力的啮齿动物。在总共178只沙鼠中使用足部电击强化穿梭箱回避型Go/No-Go程序,我们发现:(i)右侧而非左侧AC损伤会损害对连续FM(上升与下降扫描,持续时间250毫秒)方向的辨别;(ii)双侧而非单侧AC损伤会损害对分段FM(50毫秒片段,50毫秒静音间隙,总持续时间250毫秒)方向的辨别;(iii)左侧而非右侧AC损伤会损害对分段FM中间隙持续时间(10 - 30毫秒)的辨别。训练前后的AC损伤产生相似的效果。总之,这些实验表明,即使在啮齿动物中,左右AC在分析FM刺激时也使用不同的策略。因此,右侧AC通过使用全局线索来确定连续和分段FM的方向,但无法辨别间隙持续时间。左侧AC通过使用局部线索来辨别间隙持续时间,并且仅在有额外的分段信息时才确定FM方向。