首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Bilateral brain activity in auditory regions is necessary for successful vocal learning in songbirds
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Bilateral brain activity in auditory regions is necessary for successful vocal learning in songbirds

机译:听觉地区的双侧大脑活动对于在鸣禽中的人声学学习是必要的

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In humans and songbirds, neuronal activation for language and song shifts from bilateral- or diffuse-activation to left-hemispheric dominance while proficiency increases. Further parallels exist at the behavioural level: unstructured juvenile vocalizations become highly stereotyped adult vocalizations through a process of trial and error learning. Greater left-hemispheric dominance in the songbird caudomedial Nidopallium (NCM), a Wernicke-like region, is related to better imitation of the tutor's song learned early in development, indicating a role for the left NCM in forming auditory memories. Here, we hypothesize that inhibition of the left NCM during interaction with a song tutor would impair imitation of the tutor's song more than inhibition of the right NCM. We infused a transient sodium channel blocker (TTX) immediately prior to tutoring sessions in either the left or right auditory lobule of previously isolated juvenile male zebra finches (Taeniopygia guttata). Upon maturation, both right-infused and left-infused birds' tutor song imitation was significantly impaired. Left-infused birds also showed less consistency in the rhythmic stability of their song as well as increased pitch, suggesting a subtle division of function between the left and right auditory lobules.
机译:在人类和鸣禽中,语言和歌曲的神经元激活从双侧或弥漫性激活转移到左半球的优势,同时熟练增加。行为水平存在进一步的平行:非结构化的少年发声通过试验和错误学习过程成为高度刻板的成人发声。在Songbird CaudoMedial Nidopalium(NCM),一个类似Wernicke的地区的大左半球优势与更好地模仿导师的歌曲早期了解,表明左下NCM在形成听觉记忆方面的作用。在这里,我们假设禁止与歌导师的互动期间左下NCM会损害导师歌曲的模仿,而不是对右NCM的抑制。我们在先前分离的少年雄性斑马雀(Taeniopygia Guttata)的左侧或右耳听觉叶片中的左侧或右耳听觉叶片之前,在辅导或右侧听觉叶片的疗程之前立即灌输了瞬态钠通道阻滞剂(TTX)。成熟后,右漏险和留下的鸟类导师歌曲模仿受到显着损害。左注入的鸟类在他们的歌曲的节奏稳定性以及增加的音高方面也表现出更少的一致性,表明左右听觉叶片之间的功能微妙划分。

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