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首页> 外文期刊>The Journal of the Acoustical Society of America >Combining whistle acoustic parameters to discriminate Mediterranean odontocetes during passive acoustic monitoring
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Combining whistle acoustic parameters to discriminate Mediterranean odontocetes during passive acoustic monitoring

机译:在被动声学监测过程中,结合口哨声参数来区分地中海牙形骨

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摘要

Acoustic observation can complement visual observation to more effectively monitor occurrence and distribution of marine mammals. For effective acoustic censuses, calibration methods must be determined by joint visual and acoustic studies. Research is still needed in the field of acoustic species identification, particularly for smaller odontocetes. From 1994 to 2012, whistles of four odontocete species were recorded in different areas of the Mediterranean Sea to determine how reliably these vocalizations can be classified to species. Recordings were attributed to species by simultaneous visual observation. The results of this study highlight that the frequency parameters, which are linked to physical features of animals, show lower variability than modulation parameters, which are likely to be more dependent on complex eco-ethological contexts. For all the studied species, minimum and maximum frequencies were linearly correlated with body size. DFA and Classification Tree Analysis (CART) show that these parameters were the most important for classifying species; however, both statistical methods highlighted the need for combining them with the number of contour minima and contour maxima for correct classification. Generally, DFA and CART results reflected both phylogenetic distance (especially for common and striped dolphins) and the size of the species.
机译:声学观察可以补充视觉观察,从而更有效地监视海洋哺乳动物的发生和分布。为了进行有效的声学普查,必须通过联合的视觉和声学研究确定校准方法。在声学物种识别领域,特别是对于较小的齿形突科,仍需要进行研究。从1994年到2012年,在地中海的不同地区记录了四种齿形齿科动物的哨声,以确定将这些发声分类为物种的可靠程度。通过同时视觉观察将记录归因于物种。这项研究的结果突显出,与动物的生理特征有关的频率参数显示出比调制参数更低的可变性,而调制参数则更可能依赖于复杂的生态伦理学背景。对于所有研究的物种,最小和最大频率与体型线性相关。 DFA和分类树分析(CART)表明,这些参数对于物种分类最重要;但是,两种统计方法都强调了将它们与轮廓最小值和轮廓最大值的数量结合以进行正确分类的需要。通常,DFA和CART结果既反映了系统发育距离(特别是对于普通海豚和斑海豚),又反映了物种的大小。

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