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首页> 外文期刊>The Auk >A Comparison between Nocturnal Aural Counts of Passerines and Radar Reflectivity from a Canadian Weather Surveillance Radar
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A Comparison between Nocturnal Aural Counts of Passerines and Radar Reflectivity from a Canadian Weather Surveillance Radar

机译:夜间耳雀科动物的耳鸣计数与加拿大天气监视雷达的雷达反射率之间的比较

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摘要

Using a Canadian weather surveillance radar (CWSR), we assessed the relationship between aural passerine counts and radar reflectivity during autumn migration on 16 nights. Reflectivity was positively correlated on all but 1 night with the number of birds detected aurally, but the correlation strength varied between -0.58 and 0.93 among nights (mean ± SD = 0.69 ± 0.42). Using linear mixed-effects models with aural counts nested within nights, we found that the number of birds detected by observers increased with reflectivity. The slope of this relationship did not vary between observers, nor was it affected by time since sunset, but the number of birds detected aurally tended to be lower when ambient noise levels were high. We know that the radar was relatively sensitive to low bird densities, because the intercept was slightly positive and its 95% confidence interval marginally included zero. However, the relationship between the number of birds detected aurally and reflectivity varied significantly among nights. Such variation was likely caused by a combination of (interacting) factors, including bird species and behavior (e.g., calling rate, flight altitude), influencing bird detectability by the observers and the radar. The weather radar network of the United States (NEXRAD) is already used for bird migration studies, and we conclude that the use of CWSR can extend NEXRAD's coverage farther north by hundreds of kilometers, thereby increasing our understanding of how birds use the North American landscapes during migration. [PUBLICATION ABSTRACT]
机译:使用加拿大天气监视雷达(CWSR),我们评估了16个晚上的秋季迁徙过程中耳雀科动物数量与雷达反射率之间的关系。反射率在除1夜以外的所有时间与耳听鸟的数量呈正相关,但相关强度在夜间的-0.58和0.93之间变化(平均值±SD = 0.69±0.42)。使用具有嵌套在夜晚的听觉计数的线性混合效应模型,我们发现观察者发现的鸟类数量随反射率的增加而增加。观察者之间这种关系的斜率没有变化,也不受日落以来时间的影响,但是当环境噪声水平较高时,通过听觉发现的鸟类数量往往会减少。我们知道,雷达对低鸟密度相对敏感,因为拦截略微为正,其95%置信区间略微为零。但是,在夜晚之间,通过听觉发现的鸟类数量与反射率之间的关系差异很大。这种变化很可能是由(相互作用)因素的组合引起的,包括鸟类的种类和行为(例如,鸣叫率,飞行高度),影响观察者和雷达的鸟类探测能力。美国的天气雷达网络(NEXRAD)已用于鸟类迁徙研究,我们得出的结论是,使用CWSR可以将NEXRAD的覆盖范围向更北延伸数百公里,从而加深了我们对鸟类如何利用北美景观的了解在迁移期间。 [出版物摘要]

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  • 来源
    《The Auk》 |2010年第1期|p.1-11|共11页
  • 作者单位

    , François Gagnon, Département des Sciences fondamentales, Université du Québec à Chicoutimi, 555, Boulevard de l'Université, Chicoutimi, Québec G7H 2B1, Canada,François Gagnon, Canadian Wildlife Service, Environment Canada - Quebec region, 1141, Route de l'Église, B.P. 10100, Québec, Québec G1V 4H5, Canada,François Gagnon, Observatoire d'oiseaux de Tadoussac, Explos-Nature, 302 de la Rivière, Les Bergeronnes, Québec G1T 1G0, Canada,Marc Bélisle, Canadian Research Chair in Spatial and Landscape Ecology, Département de biologie, Université de Sherbrooke, 2500 Boulevard de l'Université, Sherbrooke, Québec J1K 2R1, Canada,Pierre Vaillancourt, Quebec Storm Prediction Centre, Meteorological Service of Canada, Environment Canada, Place Bonaventure, Portail Nord-Est, Montréal, Québec H5A 1L9, Canada, andJean-pierre L Savard, Wildlife Research Division, Wildlife and Landscape Science Directorate, Science and Technology Branch, Environment Canada, 1141 Route de l'Église, P.O. Box 10100, Québec, Québec G1V 4H5, CanadaMarc Bélisle, Address correspondence to this author. E-mail: marc.m.belisle@usherbrooke.ca,;

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