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首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Auditory cortical and hippocampal local-field potentials to frequency deviant tones in urethane-anesthetized rats: An unexpected role of the sound frequencies themselves
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Auditory cortical and hippocampal local-field potentials to frequency deviant tones in urethane-anesthetized rats: An unexpected role of the sound frequencies themselves

机译:氨基甲酸乙酯麻醉大鼠的听觉皮层和海马局部场电位对频率偏差音的影响:声音频率本身的意外作用

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The human brain can automatically detect auditory changes, as indexed by the mismatch negativity of event-related potentials. The mechanisms that underlie this response are poorly understood. We recorded primary auditory cortical and hippocampal (dentate gyrus, CA1) local-field potentials to serial tones in urethane-anesthetized rats. In an oddball condition, a rare (deviant) tone (p = 0.11) randomly replaced a repeated (standard) tone. The deviant tone was either lower (2200, 2700,3200,3700 Hz) or higher (4300, 4800, 5300, 5800 Hz) in frequency than the standard tone (4000 Hz). In an equiprobability control condition, all nine tones were presented at random (p = 0.11). Differential responses to deviant tones relative to the standard tone were found in the auditory cortex and the dentate gyrus but not in CA1. Only in the dentate gyrus, the responses were found to be standard- (i.e., oddball condition-) specific. In the auditory cortex, the sound frequencies themselves sufficed to explain their generation. These findings tentatively suggest dissociation among non-contextual afferent, contextual afferent and auditory change detection processes. Most importantly, they remind us about the importance of strict control of physical sound features in mismatch negativity studies in animals. (C) 2015 Elsevier B.V. All rights reserved.
机译:人脑可以自动检测听觉变化,如事件相关电位的不匹配负性所指示的那样。引起这种反应的机制知之甚少。我们记录了氨基甲酸乙酯麻醉大鼠的原发性听觉皮层和海马(齿状回,CA1)局部场电位对连续音的影响。在奇怪的情况下,一种稀有的(异常)音调(p = 0.11)随机替代了重复的(标准)音调。与标准音调(4000 Hz)相比,异常音调的频率更低(2200、2700、3200、3700 Hz)或更高(4300、4800、5300、5800 Hz)。在等概率控制条件下,所有九个音调都是随机出现的(p = 0.11)。在听觉皮层和齿状回中发现了相对于标准音的对偏离音的不同响应,但是在CA1中没有。仅在齿状回中,发现响应是标准的(即,奇球条件)特定的。在听觉皮层中,声音频率本身足以说明它们的产生。这些发现暂时暗示了非语境传入,语境传入和听觉变化检测过程之间的分离。最重要的是,它们使我们想起在动物失配阴性研究中严格控制物理声音特征的重要性。 (C)2015 Elsevier B.V.保留所有权利。

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