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Counting animals using vocalizations; a case study in dolphins

机译:用发声对动物进行计数;海豚的个案研究

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Abundance estimation of marine mammals requires matching of detection of an animal or a group of animals by two independent means. A multimodal detection model using visual and acoustic cues (surfacing and phonation) that enables abundance estimation of dolphins is proposed. The method does not require a specific time window to match the cues of both means for applying mark-recapture method. The proposed model was evaluated using data obtained in field observations of Ganges River dolphins and Irrawaddy dolphins, as examples of dispersed and condensed distributions of animals, respectively. The acoustic detection probability was approximately 80 %, 20 % higher than that of visual detection for both species, regardless of the distribution of the animals in the present study sites. The abundance estimates of Ganges River dolphins and Irrawaddy dolphins fairly agreed with the numbers reported in previous monitoring studies. The single animal detection probability was smaller than that of larger cluster size, as predicted by the model and confirmed by field data. However, dense groups of Irrawaddy dolphins showed difference in cluster sizes observed by visual and acoustic methods. Lower detection probability of single clusters of this species seemed to be caused by the clumped distribution of this species.
机译:海洋哺乳动物的丰度估计需要通过两种独立的方法来匹配一个动物或一组动物的检测。提出了一种使用视觉和听觉线索(表面和发声)的多峰检测模型,该模型能够估算海豚的丰度。该方法不需要特定的时间窗口来匹配两种应用标记重获方法的线索。使用恒河海豚和伊洛瓦底海豚在野外观察中获得的数据对拟议的模型进行了评估,分别作为动物分散和浓缩分布的例子。不管动物在当前研究地点的分布如何,两种物种的声音检测概率约为80%,比视觉检测的概率高20%。恒河豚和伊洛瓦底江海豚的丰度估计与先前监测研究中报告的数量基本吻合。由模型预测并由现场数据证实,单个动物的检测概率小于较大簇的检测概率。然而,伊洛瓦底江海豚的密集群显示通过视觉和听觉方法观察到的簇大小不同。该物种的单个簇的较低检测概率似乎是由于该物种的聚集分布引起的。

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