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从谱时特征到编码听觉实体的听觉抽象

Auditory abstraction from spectro-temporal features to coding auditory entities.

机构信息

The Gonda Multidisciplinary Brain Research Center, Bar Ilan University, Ramat Gan 52900, Israel.

出版信息

Proc Natl Acad Sci U S A. 2012 Nov 13;109(46):18968-73. doi: 10.1073/pnas.1111242109. Epub 2012 Oct 29.

Abstract

The auditory system extracts behaviorally relevant information from acoustic stimuli. The average activity in auditory cortex is known to be sensitive to spectro-temporal patterns in sounds. However, it is not known whether the auditory cortex also processes more abstract features of sounds, which may be more behaviorally relevant than spectro-temporal patterns. Using recordings from three stations of the auditory pathway, the inferior colliculus (IC), the ventral division of the medial geniculate body (MGB) of the thalamus, and the primary auditory cortex (A1) of the cat in response to natural sounds, we compared the amount of information that spikes contained about two aspects of the stimuli: spectro-temporal patterns, and abstract entities present in the same stimuli such as a bird chirp, its echoes, and the ambient noise. IC spikes conveyed on average approximately the same amount of information about spectro-temporal patterns as they conveyed about abstract auditory entities, but A1 and the MGB neurons conveyed on average three times more information about abstract auditory entities than about spectro-temporal patterns. Thus, the majority of neurons in auditory thalamus and cortex coded well the presence of abstract entities in the sounds without containing much information about their spectro-temporal structure, suggesting that they are sensitive to abstract features in these sounds.

摘要

听觉系统从声学刺激中提取与行为相关的信息。已知听觉皮层的平均活动对声音的频谱-时变模式敏感。然而,目前尚不清楚听觉皮层是否也处理声音的更抽象特征,这些特征可能比频谱-时变模式更与行为相关。我们使用来自三个听觉通路站的记录,即下丘(IC)、丘脑内侧膝状体的腹侧部分(MGB)和猫的初级听觉皮层(A1),以响应自然声音,比较了尖峰包含的关于刺激的两个方面的信息量:频谱-时变模式,以及存在于相同刺激中的抽象实体,如鸟鸣、其回声和环境噪声。IC 尖峰对频谱-时变模式的信息传达平均约与对抽象听觉实体的信息传达相同,但 A1 和 MGB 神经元对抽象听觉实体的信息传达平均是对频谱-时变模式的信息传达的三倍。因此,听觉丘脑和皮层中的大多数神经元很好地编码了声音中抽象实体的存在,而不包含关于其频谱-时变结构的太多信息,这表明它们对这些声音中的抽象特征敏感。

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