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莫桑比克海峡的海流涡偶极子对中层浮游生物的影响,通过多频率后向散射分类来突出显示。

Impact of an eddy dipole of the Mozambique channel on mesopelagic organisms, highlighted by multifrequency backscatter classification.

机构信息

CNRS, IRD, Ifremer, LEMAR, Univ Brest, Plouzané, Brest, France.

出版信息

PLoS One. 2024 Sep 11;19(9):e0309840. doi: 10.1371/journal.pone.0309840. eCollection 2024.

Abstract

The impact of a cyclonic (C), an anticyclonic (AC) eddy and transition zone (TZ), which is the area between the two eddies, on acoustic groups representing various mesopelagic organisms, was investigated using a semi-supervised multifrequency classification approach (hereafter, Escore algorithm). The Escore algorithm involved selecting regions of interest (ROIs) within multifrequency (18, 38, 70, and 120 kHz) echograms and classifying into four clusters or echo-classes using Sv differences (Sv18-38, Sv70-38, and Sv120-38). Acoustic densities and diel vertical migration strength varied between the AC, C, and TZ according to the frequency. The vertical stratification of temperature, salinity and fluorescence within the oceanographic structures had varied influences on the vertical structure of each echo-class which represent zooplankton-like organisms, small and large fish with swimbladders, and small and large siphonophores with pneumatophores. The echo-classes within the C were influenced by surface fluorescence, whereas in the AC and TZ, the echo-classes were influenced by deeper fluorescence and strong EKE. Our study provides new insights into the environmental variables within mesoscale and sub-mesoscale features impacting different groups of mesopelagic communities in the Indian Ocean.

摘要

利用半监督多频分类方法(下文称为 Escore 算法)研究了气旋(C)、反气旋(AC)涡旋及其过渡区(TZ)对代表各种中层浮游生物的声学群体的影响。Escore 算法涉及在多频(18、38、70 和 120 kHz)回声图中选择感兴趣区域(ROI),并使用 Sv 差异(Sv18-38、Sv70-38 和 Sv120-38)将其分类为四个聚类或回声类。根据频率,AC、C 和 TZ 之间的声学密度和昼夜垂直迁移强度存在差异。海洋结构内的温度、盐度和荧光的垂直分层对代表类似浮游生物的回声类、具有气囊的小鱼和大鱼以及具有通气根的小和大虹吸管的回声类的垂直结构有不同的影响。C 中的回声类受表面荧光的影响,而在 AC 和 TZ 中,回声类受更深的荧光和强 EKE 的影响。我们的研究提供了关于印度洋中尺度和次中尺度特征内的环境变量影响不同中层浮游生物群落群体的新见解。

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