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虎皮鹦鹉(Melopsittacus undulatus)对颤音歌声的感知:特殊处理的证据。

Perception of warble song in budgerigars (Melopsittacus undulatus): evidence for special processing.

机构信息

Department of Psychology, University of Maryland, College Park 20742, USA.

出版信息

Anim Cogn. 2012 Nov;15(6):1151-9. doi: 10.1007/s10071-012-0539-1. Epub 2012 Aug 14.

Abstract

The long, rambling warble song of male budgerigars is composed of a large number of acoustically complex elements uttered in streams lasting minutes a time and accompanied by various courtship behaviors. Warble song has no obvious sequential structure or patterned repetition of elements, raising questions as to which aspects of it are perceptually salient, whether budgerigars can detect changes in natural warble streams, and to what extent these capabilities are species-specific. Using operant conditioning and a psychophysical paradigm, we examined the sensitivity of budgerigars, canaries, and zebra finches to changes in long (>6 min) natural warble sequences of a male budgerigar. All three species could detect a single insertion of pure tones, zebra finch song syllables, budgerigar contact calls, or warble elements from another budgerigar's warble. In each case, budgerigars were more sensitive to these changes than were canaries or finches. When warble elements from the ongoing warble stream were used as targets and inserted, out of order, into the natural warble stream so that the only cue available was the violation of the natural ordering of warble elements, only budgerigars performed above chance. When the experiment was repeated with all the ongoing warble stream elements presented in random order, the performance of budgerigars fell to chance. These results show species-specific advantages in budgerigars for detecting acoustic changes in natural warble sequences and indicate at least a limited sensitivity to sequential rules governing the structure of their species-specific warble songs.

摘要

雄性虎皮鹦鹉悠长、散漫的颤音歌声由大量声学复杂元素组成,这些元素以持续数分钟的流的形式发出,并伴随着各种求偶行为。颤音歌声没有明显的顺序结构或元素的模式重复,这引发了一些问题,即它的哪些方面是可感知的显著的,虎皮鹦鹉是否能察觉到自然颤音流中的变化,以及这些能力在多大程度上是特定于物种的。使用操作性条件作用和心理物理范式,我们研究了虎皮鹦鹉、金丝雀和斑马雀对雄性虎皮鹦鹉长 (>6 分钟) 自然颤音序列变化的敏感性。这三个物种都能检测到单个纯音、斑马雀鸣叫声、虎皮鹦鹉的接触叫声或另一只虎皮鹦鹉的颤音中的颤音元素的插入。在每种情况下,虎皮鹦鹉对这些变化的敏感性都高于金丝雀或雀类。当使用正在进行的颤音流中的颤音元素作为目标,并以无序的方式插入自然颤音流中,以至于唯一可用的线索是颤音元素的自然排序被违反时,只有虎皮鹦鹉的表现超过了机会水平。当以随机顺序呈现所有正在进行的颤音流元素的实验重复进行时,虎皮鹦鹉的表现降至机会水平。这些结果表明虎皮鹦鹉在检测自然颤音序列中的声学变化方面具有特定于物种的优势,并表明它们对控制其物种特定颤音歌曲结构的序列规则至少具有一定的敏感性。

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本文引用的文献

2
Stimulus-dependent flexibility in non-human auditory pitch processing.
Cognition. 2012 Jan;122(1):51-60. doi: 10.1016/j.cognition.2011.08.008. Epub 2011 Sep 10.
3
Songbirds possess the spontaneous ability to discriminate syntactic rules.
Nat Neurosci. 2011 Jun 26;14(8):1067-74. doi: 10.1038/nn.2869.
4
Recursion, language, and starlings.
Cogn Sci. 2007 Jul 8;31(4):697-704. doi: 10.1080/15326900701399947.
6
Songs to syntax: the linguistics of birdsong.
Trends Cogn Sci. 2011 Mar;15(3):113-21. doi: 10.1016/j.tics.2011.01.002.
7
Simple rules can explain discrimination of putative recursive syntactic structures by a songbird species.
Proc Natl Acad Sci U S A. 2009 Dec 1;106(48):20538-43. doi: 10.1073/pnas.0908113106. Epub 2009 Nov 16.
8
Predicting progressive glaucomatous optic neuropathy using baseline standard automated perimetry data.
Invest Ophthalmol Vis Sci. 2009 Feb;50(2):674-80. doi: 10.1167/iovs.08-1767. Epub 2008 Oct 20.
9
Recursive syntactic pattern learning by songbirds.
Nature. 2006 Apr 27;440(7088):1204-7. doi: 10.1038/nature04675.
10
Brain stem evoked response to forward and reversed speech in humans.
Neuroreport. 2004 Sep 15;15(13):2057-60. doi: 10.1097/00001756-200409150-00012.

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