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Capturing Migration Phenology of Terrestrial Wildlife Using Camera Traps

机译:使用相机陷阱捕获陆生野生动物的迁移物候

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Remote photography, using camera traps, can be an effective and noninvasive tool for capturing the migration phenology of terrestrial wildlife. We deployed 14 digital cameras along a 104-kilometer longitudinal transect to record the spring migrations of caribou (Rangifer tarandus) and ptarmigan (Lagopus spp.) in the Alaskan Arctic. The cameras recorded images at 15-minute intervals, producing approximately 40,000 images, including 6685 caribou observations and 5329 ptarmigan observations. The northward caribou migration was evident because the median caribou observation (i.e., herd median) occurred later with increasing latitude; average caribou migration speed also increased with latitude (r(2) = .91). Except at the northernmost latitude, a northward ptarmigan migration was similarly evident (r(2) = .93). Future applications of this method could be used to examine the conditions proximate to animal movement, such as habitat or snow cover, that may influence migration phenology.
机译:使用相机陷阱进行的远程摄影可以是捕捉陆地野生动植物迁徙物候的有效且非侵入性的工具。我们沿着104公里长的纵向样带部署了14台数码相机,以记录北美驯鹿(Rangifer tarandus)和雷鸟(Lagopus spp。)的春季迁徙。摄像机每隔15分钟记录一次图像,产生大约40,000张图像,包括6685个北美驯鹿观察和5329个雷鸟观察。北美驯鹿迁徙是明显的,因为北美驯鹿的中位观测值(即牛群中位数)后来随着纬度的增加而发生。北美驯鹿的平均迁徙速度也随纬度增加(r(2)= .91)。除了在最北端的纬度以外,雷鸟向北迁移的情况类似(r(2)= .93)。该方法的未来应用可用于检查可能影响迁移物候的接近动物运动的条件,例如栖息地或积雪。

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