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Occupancy of red‐naped sapsuckers in a coniferous forest: using LiDAR to understand effects of vegetation structure and disturbance

机译:针叶林中红枕形啄木鸟的占有率:使用LiDAR理解植被结构和干扰的影响

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摘要

Red‐naped sapsuckers (Sphyrapicus nuchalis) are functionally important because they create sapwells and cavities that other species use for food and nesting. Red‐naped sapsucker ecology within aspen (Populus tremuloides) has been well studied, but relatively little is known about red‐naped sapsuckers in conifer forests. We used light detection and ranging (LiDAR) data to examine occupancy patterns of red‐naped sapsuckers in a conifer‐dominated system. We surveyed for sapsuckers at 162 sites in northern Idaho, USA, during 2009 and 2010. We used occupancy models and an information‐theoretic approach to model sapsucker occupancy as a function of four LiDAR‐based metrics that characterized vegetation structure and tree harvest, and one non‐LiDAR metric that characterized distance to major roads. We evaluated model support across a range of territory sizes using Akaike's information criterion. Top model support was highest at the 4‐ha extent, which suggested that 4 ha was the most relevant scale describing sapsucker occupancy. Sapsuckers were positively associated with variation of canopy height and harvested area, and negatively associated with shrub and large tree density. These results suggest that harvest regimes and structural diversity of vegetation at moderate extents (e.g., 4 ha) largely influence occurrence of red‐naped sapsuckers in conifer forests. Given the current and projected declines of aspen populations, it will be increasingly important to assess habitat relationships, as well as demographic characteristics, of aspen‐associated species such as red‐naped sapsuckers within conifer‐dominated systems to meet future management and conservation goals.
机译:红枕果(Sphyrapicus nuchalis)在功能上很重要,因为它们会形成其他动物用于食物和筑巢的洞室和洞。对白杨(Populus tremuloides)内的红枕形啄木鸟生态学进行了深入研究,但对针叶林中的红枕形啄木鸟知之甚少。我们使用光检测和测距(LiDAR)数据来检查以针叶树为主的系统中红枕形啄木鸟的占用模式。我们在2009年至2010年期间对美国爱达荷州北部的162个地点的鹰嘴豆进行了调查。我们使用占有率模型和一种信息理论方法,以基于四个以LiDAR为基础的植被结构和树木采伐特征的指标为模型,对鹰嘴豆的占有率进行建模。一种非LiDAR指标,用于描述与主要道路的距离。我们使用Akaike的信息标准评估了范围广泛的模型支持。顶级模型支持在4公顷范围内最高,这表明4公顷是描述啄木鸟的最相关比例。啄木鸟与冠层高度和采伐面积的变化呈正相关,与灌木和大树的密度呈负相关。这些结果表明,中等程度(例如4公顷)的采伐方式和植被结构多样性在很大程度上影响了针叶林中红枕形啄木鸟的发生。考虑到当前和预计的白杨种群数量的下降,评估与白杨相关的物种(如针叶树为主的系统中的红枕啄木鸟)的栖息地关系以及人口统计学特征将变得越来越重要,以满足未来的管理和保护目标。

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