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首页> 外文期刊>The Journal of Applied Ecology >Reliable methods for identifying animal deaths in GPS-and satellite-tracking data:Review,testing,and calibration
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Reliable methods for identifying animal deaths in GPS-and satellite-tracking data:Review,testing,and calibration

机译:可靠的方法来识别动物死亡gps和卫星跟踪数据:评审、测试和校准

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摘要

1.Assessing mortality factors and survival rates is a cornerstone for the management of threatened and harvestable species.Modern tracking technologies allow unprecedented opportunities to monitor the mortality of individuals for years.However,the methods employed to separate actual deaths from transmitter failures have rarely been validated.2.Here,we review these previous methods and exploit an intensive satellite-tagging programme on raptorial black kites Milvus migrans to examine through tree models whether any tag-parameter indicators could reliably separate 18 confirmed deaths (recovered corpse) from 32 confirmed cases of radio-failure (tagged individual subsequently observed alive).Classification keys were validated on 21 confirmed deaths or radio-failures from an independent tagging study on two other raptor species.3.Review of tracking studies on mortality showed that they are exponentially increasing and using a wide variety of indicators (e.g.,battery charge,stationary locations,fix frequency/quality,sudden tag disappearance,or common sense),with no preponderance of any.Few studies confirmed enough deaths or radio-failures to validate such methods.4.For GPS-satellite tags,we found a reliable classification key that correctly classified 100% of the deaths and radio-failures in both the calibration and validation datasets through three simple dichotomous indicators:(a) whether GPS locations were stationary or not;(b) whether background Doppler data confirmed them as stationary or not;and (c) whether GPS-location? frequency gave indication of transmitter malfunctioning or not (Figure 3).5.For tags recording Doppler locations alone,we failed to find a reliable classification key and advise future researchers to use Doppler data very cautiously (e.g.,by censoring any uncertain terminal events) because misclassification rates are likely to be high.6.Synthesis and applications.Refining the death surveillance function of satellite and GPS-tags will improve the cap
机译:1.是一个基石管理威胁吗和收获的物种。技术允许前所未有的机遇监视个人的死亡年。实际死亡人数从发射机故障很少validated.2。以前的方法和利用进行强化satellite-tagging节目捕食动物的黑色风筝Milvus迁移动物通过树来检查模型是否标记参数指标可靠地分离18证实死亡(恢复从32例确诊病例的radio-failure尸体)(标记个体随后观察活着)。或从一个radio-failures证实死亡独立标记研究两个猛禽species.3。表明他们是成倍增加的使用各种各样的指标(如电池批量生产,stationary locations乖乖频率/质量,突然标签消失,或常识),没有任何的优势。研究证实了足够的死亡或radio-failures来验证这种methods.4。标签,我们找到了一个可靠的分类的关键正确分类和100%的人死亡在校准和radio-failures通过三个简单的验证数据集两个指标:(a)是否GPS的位置是静止的;(b)是否背景多普勒数据证实他们是静止的或不,(c)是否gps定位?发射机故障的迹象(图3)。5。独自一人,我们没有找到一个可靠的分类关键,建议未来的研究人员使用多普勒数据非常谨慎的(例如,通过审查),因为不确定终端事件误分类率high.6。死亡监测卫星和的函数gps标签将提高上限

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