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首页> 外文期刊>Urban ecosystems >Does traffic noise alter calling time in frogs and toads? A case study of anurans in Eastern Ontario, Canada
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Does traffic noise alter calling time in frogs and toads? A case study of anurans in Eastern Ontario, Canada

机译:交通噪音会改变青蛙和蟾蜍的通话时间吗?以加拿大安大略省东部的无脊椎动物为例

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In habitats disturbed by anthropogenic noise, acoustically communicating species may develop behavioral responses that help them transmit information and overcome signal masking. We studied four anuran species breeding in wetlands, ponds, and ditches near a highway in eastern Ontario, Canada, to test whether they called more often when traffic noise intensity was lower, and stopped calling when the noise intensity increased (i.e., gap calling behavior). We made call recordings between April and July 2011, and compared the traffic noise intensity (sound pressure level) between times when the anurans were calling and times when they were not calling. We found that the two species with the highest call peak frequency (American toad, gray treefrog) called randomly with regard to traffic noise intensity. In contrast, the two species with the lowest call peak frequency (green frog, bullfrog) called more often when traffic noise intensity was low. The behavioral response in the two latter species likely represents a short-term strategy that enhances their signal-to-noise ratio thereby increasing the chance of effective communication. Our results support predictions derived from the acoustic adaptation hypothesis: low-frequency signals are more prone to be masked by anthropogenic noise and therefore require behavioral adjustments (in this study gap-calling behavior) to ameliorate this effect.
机译:在受到人为噪声干扰的栖息地中,以声音进行交流的物种可能会形成行为反应,从而帮助它们传输信息并克服信号掩蔽。我们研究了在加拿大安大略省东部高速公路附近的湿地,池塘和沟渠中繁殖的四种无脊椎动物物种,以测试它们在交通噪声强度较低时是否更频繁地呼唤,并在噪声强度增加时即停止呼唤(即,空呼行为) )。我们在2011年4月至2011年7月之间进行了通话记录,并比较了无声动物呼叫的时间和不叫动物的时间之间的交通噪声强度(声压级)。我们发现,在交通噪声强度方面,呼叫峰值频率最高的两个物种(美洲蟾蜍,灰色树蛙)是随机调用的。相反,当交通噪声强度较低时,呼叫峰值频率最低的两个物种(绿蛙,牛蛙)的呼唤频率更高。后两个物种的行为反应可能代表了一种短期策略,该策略增强了它们的信噪比,从而增加了有效交流的机会。我们的结果支持从声学适应性假设得出的预测:低频信号更容易被人为噪声掩盖,因此需要进行行为调整(在本研究中称为虚空行为)以减轻这种影响。

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