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首页> 外文期刊>Frontiers in Psychology >Can Birds Perceive Rhythmic Patterns? A Review and Experiments on a Songbird and a Parrot Species
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Can Birds Perceive Rhythmic Patterns? A Review and Experiments on a Songbird and a Parrot Species

机译:鸟类可以感知节奏模式吗?鸣禽和鹦鹉物种的回顾与实验

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While humans can easily entrain their behavior with the beat in music, this ability is rare among animals. Yet, comparative studies in non-human species are needed if we want to understand how and why this ability evolved. Entrainment requires two abilities: (1) recognizing the regularity in the auditory stimulus and (2) the ability to adjust the own motor output to the perceived pattern. It has been suggested that beat perception and entrainment are linked to the ability for vocal learning. The presence of some bird species showing beat induction, and also the existence of vocal learning as well as vocal non-learning bird taxa, make them relevant models for comparative research on rhythm perception and its link to vocal learning. Also, some bird vocalizations show strong regularity in rhythmic structure, suggesting that birds might perceive rhythmic structures. In this paper we review the available experimental evidence for the perception of regularity and rhythms by birds, like the ability to distinguish regular from irregular stimuli over tempo transformations and report data from new experiments. While some species show a limited ability to detect regularity, most evidence suggests that birds attend primarily to absolute and not relative timing of patterns and to local features of stimuli. We conclude that, apart from some large parrot species, there is limited evidence for beat and regularity perception among birds and that the link to vocal learning is unclear. We next report the new experiments in which zebra finches and budgerigars (both vocal learners) were first trained to distinguish a regular from an irregular pattern of beats and then tested on various tempo transformations of these stimuli. The results showed that both species reduced the discrimination after tempo transformations. This suggests that, as was found in earlier studies, they attended mainly to local temporal features of the stimuli, and not to their overall regularity. However, some individuals of both species showed an additional sensitivity to the more global pattern if some local features were left unchanged. Altogether our study indicates both between and within species variation, in which birds attend to a mixture of local and to global rhythmic features.
机译:尽管人类可以通过音乐的节奏轻松地带动他们的行为,但是这种能力在动物中是罕见的。但是,如果我们想了解这种能力的发展方式和原因,就需要对非人类物种进行比较研究。训练需要两种能力:(1)识别听觉刺激的规律性;(2)将自己的运动输出调整为感知模式的能力。已经提出,拍子的感知和训练与语音学习的能力有关。一些表现出节拍感应的鸟类物种的存在,以及语音学习以及非学习鸟类群的存在,使其成为节奏研究及其与语音学习联系的比较研究的相关模型。另外,某些鸟类的发声在节奏结构上显示出很强的规律性,这表明鸟类可能会感知节奏结构。在本文中,我们回顾了有关鸟类对规律性和节律的感知的可用实验证据,例如通过速度转换来区分常规和不规则刺激的能力,以及从新实验中报告数据的能力。尽管某些物种显示规律性的能力有限,但大多数证据表明,鸟类主要参与模式的绝对时间而非相对时间以及刺激的局部特征。我们得出的结论是,除了一些大型鹦鹉物种以外,对于鸟类之间的节拍和规律性知觉的证据有限,并且与声乐学习的联系尚不清楚。接下来,我们将报告新的实验,在该实验中,首先训练斑马雀和鹦鹉(均为声乐学习者),以区分规律的节拍和不规则的节拍,然后测试这些刺激的各种速度变化。结果表明,两种物种都降低了节奏转换后的辨别力。这表明,正如在早期研究中发现的那样,它们主要参与刺激的局部时态特征,而不是其整体规律性。但是,如果某些局部特征保持不变,则这两个物种的某些个体都对更全局的模式表现出更高的敏感性。我们的研究总的来说表明了物种之间和内部的变化,其中鸟类参与了局部和整体的节律特征的混合。

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