首页> 外文期刊>Avian Conservation and Ecology >Use of an acoustic location system to understand how presence of conspecifics and canopy cover influence Ovenbird (Seiurus aurocapilla) space use near reclaimed wellsites in the boreal forest of Alberta
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Use of an acoustic location system to understand how presence of conspecifics and canopy cover influence Ovenbird (Seiurus aurocapilla) space use near reclaimed wellsites in the boreal forest of Alberta

机译:使用声学定位系统来了解特定物种和冠层的存在如何影响艾伯塔省北方森林中被回收的井场附近的烤箱鸟(Seiurus aurocapilla)空间的使用

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Standard approaches in acoustic monitoring provide coarse information for understanding songbird behavior, abundance, and habitat use. An alternative approach, acoustic localization, determines accurate bird singing locations from time of arrival differences of songs to microphones in an array. The need to collect spatially accurate data on songbirds is necessary to understand impacts of disturbances characteristic of energy extraction such as wellsites, and how these impacts change following reclamation. Our objective was to use acoustic localization to determine if Ovenbirds (Seiurus aurocapilla) used reclaimed wellsites, and how this behavior changed as a function of canopy cover on wellsites and the presence of conspecifics. We estimated the number of individuals present at each site based on previous data on Ovenbird singing and movement rates. Our hypotheses that use of wellsites by Ovenbirds should increase with increasing canopy cover on the wellsite, and decrease with presence of conspecifics were supported. Technological advances in this method could provide an alternative to conventional methods like territory or spot mapping in the future, when used in combination with other types of data collection.
机译:声学监测的标准方法为了解鸣鸟的行为,丰度和栖息地使用提供了粗略的信息。另一种方法是声学定位,可以根据歌曲与阵列中麦克风之间的到达时间差异来确定准确的鸟类唱歌位置。有必要收集有关鸣禽的空间精确数据,以了解能量提取的干扰特征(如井场)的影响,以及这些影响在填海后如何变化。我们的目标是使用声学定位技术来确定Ovenbirds(Seiurus aurocapilla)是否使用了回收的井场,以及这种行为如何根据井场的顶盖覆盖和特定物种的存在而变化。我们根据以前有关Ovenbird唱歌和移动速度的数据,估计了每个站点的人员数量。我们的假设认为,Ovenbirds对井场的使用应随井场盖层的增加而增加,并随着同种异体的存在而减少。当与其他类型的数据收集结合使用时,此方法的技术进步可以为将来的传统方法(如领土或地点映射)提供替代方案。

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