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注意,相似性会影响斑胸草雀的句法稳定性。

Note similarities affect syntactic stability in zebra finches.

作者信息

Méndez Jorge M, Cooper Brenton G, Goller Franz

机构信息

Department of Physics and Astronomy, Minnesota State University-Mankato, Mankato, MN, USA.

Department of Psychology, Texas Christian University, Fort Worth, TX, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2025 Jan;211(1):35-52. doi: 10.1007/s00359-024-01713-6. Epub 2024 Aug 12.

DOI:10.1007/s00359-024-01713-6
PMID:39133335
Abstract

The acquisition of an acoustic template is a fundamental component of vocal imitation learning, which is used to refine innate vocalizations and develop a species-specific song. In the absence of a model, birds fail to develop species typical songs. In zebra finches (Taeniopygia guttata), tutored birds produce songs with a stereotyped sequence of distinct acoustic elements, or notes, which form the song motif. Songs of untutored individuals feature atypical acoustic and temporal structure. Here we studied songs and associated respiratory patterns of tutored and untutored male zebra finches to investigate whether similar acoustic notes influence the sequence of song elements. A subgroup of animals developed songs with multiple acoustically similar notes that are produced with alike respiratory motor gestures. These birds also showed increased syntactic variability in their adult motif. Sequence variability tended to occur near song elements which showed high similarity in acoustic structure and underlying respiratory motor gestures. The duration and depth of the inspirations preceding the syllables where syntactic variation occurred did not allow prediction of the following sequence of notes, suggesting that the varying duration and air requirement of the following expiratory pulse is not predictively encoded in the motor program. This study provides a novel method for calculation of motor/acoustic similarity, and the results of this study suggest that the note is a fundamental acoustic unit in the organization of the motif and could play a role in the neural code for song syntax.

摘要

获取声学模板是发声模仿学习的一个基本组成部分,它用于完善先天发声并形成特定物种的歌声。在没有模型的情况下,鸟类无法形成典型的物种歌声。在斑胸草雀(Taeniopygia guttata)中,接受训练的鸟类唱出的歌曲具有由不同声学元素或音符组成的固定序列,这些元素或音符构成了歌曲主题。未接受训练的个体的歌声具有非典型的声学和时间结构。在这里,我们研究了接受训练和未接受训练的雄性斑胸草雀的歌声及相关呼吸模式,以调查相似的声学音符是否会影响歌曲元素的序列。一组动物唱出的歌曲包含多个声学上相似的音符,且这些音符由相似的呼吸运动手势产生。这些鸟类在成年主题中还表现出句法变异性增加。序列变异性往往出现在声学结构和潜在呼吸运动手势高度相似的歌曲元素附近。句法变化发生的音节之前的吸气持续时间和深度无法预测接下来的音符序列,这表明接下来呼气脉冲的不同持续时间和空气需求并未在运动程序中进行预测编码。本研究提供了一种计算运动/声学相似性的新方法,研究结果表明音符是主题组织中的一个基本声学单元,可能在歌曲句法的神经编码中发挥作用。

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本文引用的文献

1
Lesions in a songbird vocal circuit increase variability in song syntax.鸣禽发声回路中的损伤会增加鸣唱句法的可变性。
Elife. 2024 Apr 18;13:RP93272. doi: 10.7554/eLife.93272.
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Single-neuronal elements of speech production in humans.人类言语产生中单神经元的成分。
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Large-scale single-neuron speech sound encoding across the depth of human cortex.人类大脑皮层深度范围内的大规模单神经元语音编码
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Physiological constraints and cognitive chunking: Sequence organization in the songs of zebra finches (Taeniopygia guttata).生理约束与认知组块:斑胸草雀(Taeniopygia guttata)歌声中的序列组织。
J Comp Psychol. 2023 Nov;137(4):265-282. doi: 10.1037/com0000357. Epub 2023 Aug 10.
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Thalamus drives vocal onsets in the zebra finch courtship song.丘脑驱动斑胸草雀求偶鸣叫中的发声起始。
Nature. 2023 Apr;616(7955):132-136. doi: 10.1038/s41586-023-05818-x. Epub 2023 Mar 22.
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Learning to pause: Fidelity of and biases in the developmental acquisition of gaps in the communicative signals of a songbird.学习停顿:鸣禽交际信号间隙发展习得中的保真度和偏差。
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Preparing to sing: respiratory patterns underlying motor readiness for song.准备唱歌:与歌曲产生相关的运动预备的呼吸模式。
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Nat Commun. 2020 Oct 6;11(1):5029. doi: 10.1038/s41467-020-18732-x.