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Estimating minke whale {Balaenoptera acutorostrata) boing sound density using passive acoustic sensors

机译:使用无源声学传感器估算小须鲸(Balaenoptera acutorostrata)的声密度

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Density estimation for marine mammal species is performed primarily using visual distance sampling or capture-recapture. Minke whales in Hawaiian waters are very difficult to sight; however, they produce a distinctive "boing" call, making them ideal candidates for passive acoustic density estimation. We used an array of 14 bottom-mounted hydrophones, distributed over a 60 X 30 km area off Kauai, Hawaii, to estimate density during 12 d of recordings in early 2006. We converted the number of acoustic cues (i.e., boings) detected using signal processing software into a cue density by accounting for the false positive rate and probability of detection. The former was estimated by manual validation, the latter by applying spatially explicit capture-recapture (SECR) methods to a subset of data where we had determined which hydrophones detected each call. Estimated boing density was 130 boings per hour per 10,000 km2 (95% CI 104-163). Little is known about the population's acoustic behavior, so conversionfrom boing to animal density is difficult. As a demonstration of the method, we used a tentative boing rate of 6.04 boings per hour, from a single animal tracked in 2009, to give an estimate of 21.5 boing-calling minke whales per 10,000 km~2.
机译:海洋哺乳动物物种的密度估计主要使用视觉距离采样或捕获再捕获来进行。夏威夷水域的小须鲸很难看见。然而,它们产生了独特的“预兆”声,使其成为无源声密度估计的理想候选者。我们使用了14个底部安装的水听器阵列,分布在夏威夷考艾岛附近60 X 30 km的区域,以估计2006年初记录的12 d期间的密度。我们转换了使用信号处理软件通过考虑误报率和检测概率将其转换为提示密度。前者是通过手动验证进行估算的,后者是通过对数据的子集应用空间显式捕获-捕获(SECR)方法来确定的,其中我们确定了哪些水听器检测到了每个呼叫。估计的波音密度为每10,000 km2每小时130个波音(95%CI 104-163)。关于种群的声学行为知之甚少,因此很难从Boing转换为动物密度。作为该方法的证明,我们使用2009年追踪的单只动物的每小时0.04波音的暂定波音速度,得出每10,000 km〜2约有21.5条波音小须鲸。

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