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Experimental evidence for real-time song frequency shift in response to urban noise in a passerine bird
Author(s) -
Eira BermúdezCuamatzin,
Alejandro A. Ríos-Chelén,
Diego Gil,
Constantino Macı́as Garcı́a
Publication year - 2010
Publication title -
biology letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.596
H-Index - 110
eISSN - 1744-957X
pISSN - 1744-9561
DOI - 10.1098/rsbl.2010.0437
Subject(s) - passerine , quiet , noise (video) , masking (illustration) , biology , acoustics , ambient noise level , background noise , pink noise , adaptation (eye) , singing , communication , ecology , computer science , psychology , physics , sound (geography) , artificial intelligence , neuroscience , art , visual arts , quantum mechanics , image (mathematics)
Research has shown that bird songs are modified in different ways to deal with urban noise and promote signal transmission through noisy environments. Urban noise is composed of low frequencies, thus the observation that songs have a higher minimum frequency in noisy places suggests this is a way of avoiding noise masking. Most studies are correlative and there is as yet little experimental evidence that this is a short-term mechanism owing to individual plasticity. Here we experimentally test if house finches (Carpodacus mexicanus) can modulate the minimum frequency of their songs in response to different noise levels. We exposed singing males to three continuous treatments: low-high-low noise levels. We found a significant increase in minimum frequency from low to high and a decrement from high to low treatments. We also found that this was mostly achieved by modifying the frequency of the same low-frequency syllable types used in the different treatments. When different low-frequency syllables were used, those sung during the noisy condition were longer than the ones sang during the quiet condition. We conclude that house finches modify their songs in several ways in response to urban noise, thus providing evidence of a short-term acoustic adaptation.

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