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Species-typical songs in white-crowned sparrows tutored with only phrase pairs

机译:白冠麻雀的典型歌曲,仅用短语对进行辅导

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Modern theories of learned vocal behaviours, such as human speech and singing in songbirds(1), posit that acoustic communication signals are reproduced from memory, using auditory feedback(2). The nature of these memories, however, is unclear. Here we propose and test a model for how complex song structure can emerge from sparse sequence information acquired during tutoring. In this conceptual model, a population of combination-sensitive (phrase-pair) detectors is shaped by early exposure to song and serves as the minimal representation of the template necessary for generating complete song. As predicted by the model, birds that were tutored with only pairs of normally adjacent song phrases were able to assemble full songs in which phrases were placed in the correct order; birds that were tutored with reverse-ordered phrase pairs sang songs with reversed phrase order. Birds that were tutored with all song phrases, but presented singly, failed to produce normal, full songs. These findings provide the first evidence for a minimal requirement of sequence information in the acoustic model that can give rise to correct song structure.
机译:现代学习的声音行为理论,例如人类的言语和在鸣鸟中唱歌(1),是基于听觉反馈(2)从记忆中复制出声音通信信号。但是,这些记忆的性质尚不清楚。在这里,我们提出并测试了一个模型,该模型说明了如何从补习中获取的稀疏序列信息中出现复杂的歌曲结构。在此概念模型中,组合敏感(短语对)检测器的数量通过歌曲的早期暴露而形成,并作为生成完整歌曲所需的模板的最小表示。正如该模型所预测的那样,只用一对通常相邻的歌曲短语进行辅导的鸟儿就能够组装完整的歌曲,并以正确的顺序放置短语。用反序短语对进行辅导的鸟儿会唱出反序的歌曲。鸟儿接受了所有歌曲短语的辅导,但只表演了一次,却未能制作出正常,完整的歌曲。这些发现为声学模型中对序列信息的最低要求提供了第一个证据,该要求可以引起正确的歌曲结构。

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