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Exploring behavioural responses of shorebirds to impulsive noise

机译:探索水鸟对脉冲噪声的行为响应

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Despite recent research interest in the consequences of chronic noise for animal populations, the effects of impulsive noise are less well understood. Determining wildlife responses to impulsive sound is pertinent in coastal areas where development ofport and power generation industries may result in disturbance from impulsive sounds such as percussive piling, especially around estuaries which may support internationally important numbers of bird species. Discussions between regulators, planning authorities and regional development agencies over precautionary levels of impulsive sound emitting activities are common, yet we're unaware of any study which provides guidance on acceptable noise limits that would keep disturbance to shorebirds to a minimum. This experimental study intentionally disturbed birds at a high tide roost site, an agricultural field adjacent to the sea wall on the south bank of the Humber estuary in northern England, using an impulsive sound, and their behavioural responses were recorded. The researcher sounded an air-horn at ever decreasing distances towards a mixed species flock of shorebirds. While visual disturbance from the experimenter was taken into consideration in the methods, we cannot statistically separate their effects in this study. An ordinal logistic regression model demonstrated a statistically significant positive relationship between the decibel (dB(A)) level experienced by the birds and the behavioural response observed. In principle, this model can be used to predict the probability of a particular behavioural response at a given dB(A) level. Estimates of sound levels which included calculation of geometric and atmospheric attenuation were superior over more simple measures in predicting behavioural responses. This study has implications for assessing possible disturbance caused by impulsive noise, and adds to growing evidence that the effects of noise may be an important, albeit not straightforward, consideration in management decisions made for shorebirds and other avian species.
机译:尽管最近有研究关注慢性噪声对动物种群的影响,但对脉冲噪声的影响了解得还很少。在沿海地区,确定野生动植物对脉冲声音的反应很重要,在沿海地区,港口和发电行业的发展可能会导致诸如敲击打桩等脉冲声音的干扰,特别是在河口附近,这可能支持国际上重要的鸟类物种。监管机构,规划机构和区域发展机构之间就脉冲声发射活动的预防性水平进行的讨论很普遍,但我们仍未注意到有任何研究提供了可接受的噪声限值指导,以将对水鸟的干扰降到最低。这项实验性研究使用冲动声在高潮栖息地,毗邻英格兰北部亨伯河口南岸海堤的农田上干扰了鸟类,并记录了它们的行为反应。研究人员向混合着多种水鸟群的距离越来越短时发出了号角。尽管在方法中考虑了来自实验者的视力障碍,但在本研究中我们无法从统计学上分离其影响。序数逻辑回归模型表明,鸟类经历的分贝(dB(A))水平与观察到的行为反应之间存在统计学上显着的正相关。原则上,该模型可用于预测在给定dB(A)级别下特定行为响应的概率。在预测行为反应时,包括对几何和大气衰减的计算在内的声音水平估计要优于更简单的措施。这项研究对评估由脉冲噪声引起的可能干扰具有影响,并增加了越来越多的证据表明,噪声的影响可能是对水鸟和其他鸟类做出的管理决策中的一个重要考虑因素,尽管并非直接。

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