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Aerial Prefeeding Followed by Ground Based Toxic Baiting for More Efficient and Acceptable Poisoning of Invasive Small Mammalian Pests

机译:空中预先喂食然后进行地面有毒诱饵以更有效地接受侵入性的小型哺乳动物害虫

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摘要

Introduced brushtail possums (Trichosurus vulpecula) and rat species (Rattus spp.) are major vertebrate pests in New Zealand, with impacts on conservation and agriculture being managed largely through poisoning operations. Aerial distribution of baits containing sodium fluoroacetate (1080) has been refined to maximise cost effectiveness and minimise environmental impact, but this method is strongly opposed by some as it is perceived as being indiscriminate. Although ground based control enables precise placement of baits, operations are often more than twice as costly as aerial control, mainly due to the high labour costs. We investigated a new approach to ground based control that combined aerial distribution of non-toxic ‘prefeed’ baits followed by sparse distribution of toxic baits at regular intervals along the GPS tracked prefeeding flight paths. This approach was tested in two field trials in which both 1080 baits and cholecalciferol baits were used in separate areas. Effectiveness of the approach, assessed primarily using ‘chewcards’, was compared with that of scheduled aerial 1080 operations that were conducted in outlying areas of both trials. Contractors carrying out ground based control were able to follow the GPS tracks of aerial prefeeding flight lines very accurately, and with 1080 baits achieved very high levels of kill of possums and rats similar to those achieved by aerial 1080 baiting. Cholecalciferol was less effective in the first trial, but by doubling the amount of cholecalciferol bait used in the second trial, few possums or rats survived. By measuring the time taken to complete ground baiting from GPS tracks, we predicted that the method (using 1080 baits) would be similarly cost effective to aerial 1080 operations for controlling possums and rats, and considerably less expensive than typical current costs of ground based control. The main limitations to the use of the method will be access to, and size of, the operational site, along with topography and vegetation density.
机译:引入的灌木尾负鼠(Trichosurus vulpecula)和大鼠物种(Rattus spp。)是新西兰的主要脊椎动物害虫,其对保护和农业的影响主要通过中毒操作进行管理。改进了含氟乙酸钠(1080)诱饵的空中分布,以最大程度地提高成本效益并最小化环境影响,但是这种方法遭到一些人的强烈反对,因为它被认为是不加区别的。尽管基于地面的控制可以精确放置诱饵,但操作成本通常比空中控制高两倍以上,这主要是由于人工成本较高。我们研究了一种新的地面控制方法,该方法结合了无毒“预喂”诱饵的空中分布,然后沿GPS跟踪的预喂飞行路线按固定间隔稀疏分布了有毒诱饵。在两次现场试验中对该方法进行了测试,其中在单独的区域中同时使用了1080饵和胆钙化固醇饵。该方法的有效性(主要使用“咀嚼卡”进行了评估)与这两次试验在外围地区进行的预定1080空中操作进行了比较。进行地面控制的承包商能够非常精确地跟踪空中预喂飞行路线的GPS轨迹,并且与1080空中诱饵相比,1080诱饵可以杀死非常高的负鼠和老鼠。胆钙化固醇在第一项试验中效果较差,但通过将第二项试验中胆钙化固醇诱饵的量加倍,几乎没有负鼠或大鼠存活。通过测量从GPS轨道完成地面诱饵所花费的时间,我们预测该方法(使用1080诱饵)与控制负鼠和老鼠的空中1080操作类似,具有成本效益,并且比目前基于地面的控制的典型成本要便宜得多。使用该方法的主要限制将是操作地点的访问和大小以及地形和植被密度。

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