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首页> 外文期刊>Deep-Sea Research >Euphausiid distribution along the Western Antarctic Peninsula-Part A: Development of robust multi-frequency acoustic techniques to identify euphausiid aggregations and quantify euphausiid size, abundance, and biomass
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Euphausiid distribution along the Western Antarctic Peninsula-Part A: Development of robust multi-frequency acoustic techniques to identify euphausiid aggregations and quantify euphausiid size, abundance, and biomass

机译:沿南极半岛的洋房形分布-A部分:发展稳健的多频声学技术,以识别洋气形聚集体并量化其尺寸,丰度和生物量

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摘要

Methods were refined and tested for identifying the aggregations of Antarctic euphausiids (Euphausia spp.) and then estimating euphausiid size, abundance, and biomass, based on multi-frequency acoustic survey data. A threshold level of volume backscattering strength for distinguishing euphausiid aggregations from other zooplankton was derived on the basis of published measurements of euphausiid visual acuity and estimates of the minimum density of animals over which an individual can maintain visual contact with its nearest neighbor. Differences in mean volume backscattering strength at 120 and 43 kHz further served to distinguish euphausiids from other sources of scattering. An inversion method was then developed to estimate simultaneously the mean length and density of euphausiids in these acoustically identified aggregations based on measurements of mean volume backscattering strength at four frequencies (43, 120, 200, and 420 kHz). The methods were tested at certain locations within an acoustically surveyed continental shelf region in and around Marguerite Bay, west of the Antarctic Peninsula, where independent evidence was also available from net and video systems. Inversion results at these test sites were similar to net samples for estimated length, but acoustic estimates of euphausiid density exceeded those from nets by one to two orders of magnitude, likely due primarily to avoidance and to a lesser extent to differences in the volumes sampled by the two systems. In a companion study, these methods were applied to the full acoustic survey data in order to examine the distribution of euphausiids in relation to aspects of the physical and biological environment [Lawson, G.L., Wiebe, P.H., Ashjian, C.J., Stanton, T.K., 2008. Euphausiid distribution along the Western Antarctic Peninsula-Part B: Distribution of euphausiid aggregations and biomass, and associations with environmental features.
机译:对方法进行了改进和测试,以识别南极古生物(Euphausia spp。)的聚集,然后根据多频声学调查数据估算古生物的大小,丰度和生物量。根据已发表的e鱼视敏度的测量值和对个体可以维持与其最近邻居保持视觉接触的动物最小密度的估计值,得出用于区分e鱼藻类聚集体与其他浮游动物的体积反向散射强度的阈值水平。在120 kHz和43 kHz时,平均体积后向散射强度的差异进一步有助于区分上微结构和其他散射源。然后开发了一种反演方法,以基于在四个频率(43、120、200和420 kHz)下的平均体积后向散射强度的测量值,同时估计这些声学识别的聚集体中的虫体的平均长度和密度。该方法在南极半岛以西的玛格丽特湾及其周围经声学勘测的大陆架区域内的某些位置进行了测试,在那里也可以从网络和视频系统获得独立证据。这些测试点的反演结果与网状样本的估计长度相似,但是在声学上,网纹管密度的估算值比网状结构的声学估算值高出一到两个数量级,这可能主要是由于回避,并在较小程度上是由于这两个系统。在伴随研究中,将这些方法应用于完整的声学勘测数据,以检查与实物和生物环境相关的整个古堡类的分布[Lawson,GL,Wiebe,PH,Ashjian,CJ,Stanton,TK, 2008年。南极半岛西部的Euphausiid分布-B部分:Euphausiid聚集体和生物量的分布以及与环境特征的关联。

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