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Attachment and performance of Argos satellite tracking devices fitted to black cockatoos (Calyptorhynchus spp.)

机译:装在黑美冠鹦鹉(Calyptorhynchus spp。)上的Argos卫星跟踪设备的附件和性能

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摘要

Context Studying interactions between a wildlife species and its spatial environment can enable a deeper understanding of its ecology. Studies of spatial ecology are generally undertaken by attaching tracking devices to selected individuals and following their movements. Highly mobile species, such as black cockatoos (Calyptorhynchus spp.), that occupy habitats with patchy resources are ideal candidates. The powerful beak and chewing habits of black cockatoos make it difficult to successfully attach tracking devices to them. Aims We developed a safe technique for attaching tracking devices to black cockatoos and assessed the impact of the tracking devices, as well as their performance in relation to battery life, retention time and accuracy of location fixes. Methods We describe a technique for attaching Telonics (Mesa, AZ, USA) Argos Avian Transmitter TAV 2617 tracking devices to the two central tail feathers of black cockatoos. Key results Of 26 tracking devices fitted (24 to Carnaby's cockatoos, C. latirostris; two to Baudin's cockatoos, C. baudinii), 20 exhibited longer retention time than the nominal battery life. One tracking device was chewed until it was non-functional before release and two were presumed chewed after release because their tracking devices failed prematurely. There was no evidence that the tracking devices inhibited the flight capability of cockatoos. The performance of the Argos tracking devices exceeded expectations with regard to retention times, battery life and overall accuracy of location fixes. The tracking devices enabled detection of instances of rapid long-distance movements, including one bird that travelled 70km between night roosts while migrating. Most study birds (68%) remained within 50km of their release sites while monitored. Conclusion The tracking devices were a suitable choice for black cockatoos and for the purpose of this study. They posed minimal snag risk, were of suitable dimensions for tail attachment and they enabled data to be collected even if birds dispersed long distances. The main limitations that must be considered when assessing their suitability for future research projects are the errors associated with location fixes, limited retention time in relation to moulting of tail feathers and limited battery life. Implications The development of a method for successfully attaching tracking devices to black cockatoos opens the possibility to study aspects of the ecology of black cockatoos and other highly mobile species that was not previously possible.
机译:背景研究野生动物物种及其空间环境之间的相互作用可以使人们对其生态学有更深入的了解。通常通过将跟踪设备连接到选定的个体并跟随他们的运动来进行空间生态学研究。理想的候选物种是高度活动的物种,例如栖息在斑驳资源中的栖息地的黑美冠鹦鹉(Calyptorhynchus spp。)。黑鹦鹉的强壮的喙和咀嚼习惯使其很难成功地将跟踪设备连接到它们。目的我们开发了一种将跟踪设备连接到黑鹦鹉的安全技术,并评估了跟踪设备的影响以及它们在电池寿命,保留时间和定位精度方面的性能。方法我们描述了一种将Telonics(美国亚利桑那州,梅萨)Argos Avian Transmitter TAV 2617跟踪设备连接到黑鹦鹉的两个中央尾羽的技术。主要结果在安装的26个跟踪设备中(对Carnaby的凤头鹦鹉C. latirostris装了24个;对Baudin的凤头鹦鹉C. baudinii的两个装了),其中20个的保持时间比正常电池寿命更长。一台跟踪设备被咀嚼直到其在释放之前不起作用,而两台被认为在释放之后被咀嚼了,因为它们的跟踪设备过早失效。没有证据表明跟踪装置会抑制鹦鹉的飞行能力。关于保留时间,电池寿命和位置修复的整体准确性,Argos跟踪设备的性能超出了预期。跟踪设备能够检测到快速长距离运动的情况,包括一只鸟在迁徙时夜栖息之间的距离为70公里。大多数受监视的鸟类(68%)仍留在离其释放地点50公里以内。结论跟踪设备是黑鹦鹉的合适选择,也是本研究的目的。它们具有最小的钩连风险,并且具有适合尾巴附着的尺寸,即使鸟类分散很长的距离,也可以收集数据。在评估其对未来研究项目的适用性时,必须考虑的主要限制是与定位相关的错误,与尾羽换羽有关的保留时间有限以及电池寿命有限。含义成功地将跟踪设备连接到黑鹦鹉的方法的开发为研究黑鹦鹉和其他以前无法实现的高迁移物种的生态学方面提供了可能性。

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