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侧化神经元激活的镜像模式反映了鸟类听觉皮层中的新旧记忆。

Mirrored patterns of lateralized neuronal activation reflect old and new memories in the avian auditory cortex.

作者信息

Olson Elizabeth M, Maeda Rie K, Gobes Sharon M H

机构信息

Neuroscience Program, Wellesley College, 106 Central Street, Wellesley, MA 02481-8203, United States.

Neuroscience Program, Wellesley College, 106 Central Street, Wellesley, MA 02481-8203, United States.

出版信息

Neuroscience. 2016 Aug 25;330:395-402. doi: 10.1016/j.neuroscience.2016.06.009. Epub 2016 Jun 8.

Abstract

In monolingual humans, language-related brain activation shows a distinct lateralized pattern, in which the left hemisphere is often dominant. Studies are not as conclusive regarding the localization of the underlying neural substrate for language in sequential language learners. Lateralization of the neural substrate for first and second language depends on a number of factors including proficiency and early experience with each language. Similar to humans learning speech, songbirds learn their vocalizations from a conspecific tutor early in development. Here, we show mirrored patterns of lateralization in the avian analog of the mammalian auditory cortex (the caudomedial nidopallium [NCM]) in sequentially tutored zebra finches (Taeniopygia guttata​) in response to their first tutor song, learned early in development, and their second tutor song, learned later in development. The greater the retention of song from their first tutor, the more right-dominant the birds were when exposed to that song; the more birds learned from their second tutor, the more left-dominant they were when exposed to that song. Thus, the avian auditory cortex may preserve lateralized neuronal traces of old and new tutor song memories, which are dependent on proficiency of song learning. There is striking resemblance in humans: early-formed language representations are maintained in the brain even if exposure to that language is discontinued. The switching of hemispheric dominance related to the acquisition of early auditory memories and subsequent encoding of more recent memories may be an evolutionary adaptation in vocal learners necessary for the behavioral flexibility to acquire novel vocalizations, such as a second language.

摘要

在单语人类中,与语言相关的大脑激活呈现出明显的偏侧化模式,其中左半球通常占主导地位。对于顺序语言学习者语言基础神经基质的定位,研究结果尚无定论。第一语言和第二语言神经基质的偏侧化取决于多种因素,包括每种语言的熟练程度和早期学习经历。与人类学习语言类似,鸣禽在发育早期从同种导师那里学习发声。在这里,我们展示了在顺序接受教导的斑胸草雀(Taeniopygia guttata)中,哺乳动物听觉皮层(caudomedial nidopallium,NCM)的鸟类类似物中存在偏侧化的镜像模式,这是对它们在发育早期学习的第一首导师歌曲以及在发育后期学习的第二首导师歌曲的反应。它们对第一首导师歌曲的保留程度越高,在听到那首歌曲时鸟类越偏向右侧主导;从第二首导师那里学到的内容越多,在听到那首歌曲时它们越偏向左侧主导。因此,鸟类听觉皮层可能保留了旧的和新的导师歌曲记忆的偏侧化神经元痕迹,这取决于歌曲学习的熟练程度。这与人类有惊人的相似之处:即使停止接触某种语言,但早期形成的语言表征仍保留在大脑中。与早期听觉记忆的获取以及随后更新记忆的编码相关的半球优势转换,可能是发声学习者的一种进化适应,对于获取新发声(如第二语言)所需的行为灵活性至关重要。

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