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Capturing quantitative zooplankton information in the sea: Performance test of laser optical plankton counter and video plankton recorder in a Calanus finmarchicus dominated summer situation

机译:捕获海洋中的浮游动物定量信息:夏季尾鳍海螯虾中激光浮游生物计数器和视频浮游生物记录仪的性能测试

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摘要

We compared two optical plankton counters, the Laser Optical Plankton Counter (LOPC) and the Video Plankton Recorder (VPR) for their abundance estimates of Calanus finmarchicus during an early summer situation (June 2008) in two North Norwegian fjords. The LOPC was mounted on the VPR frame in order to sample the same body of water. The combined system of LOPC and VPR was operated by vertical profiling from the surface to 100 m of depth in several locations of the fjords representing different blooming conditions and zooplankton community structures. Data from the two instruments, as well as from CTD-F, were logged concurrently and retrieved on deck after about 15 depth profiles. Primary data were analysed according to standard routines, and choices made during sampling and analyses (sampling volume, selection of size range, transparency of particles, statistics) are discussed. Data were averaged for every 5, 10 and 15m depth bins. The vertical profiles of C. finmarchicus CIV-CVI abundance that were obtained by LOPC and VPR, respectively, showed a striking similarity. No significant differences between profiles sampled by these two instruments were observed when data were binned into 15 m bins. At low abundances (<100 Calanus sp. L~(-1)) profiles were significantly different when data were binned into 5- or 10-m bins. This is attributed to the small sampling volumes of the LOPC and the VPR, and to very patchy distributions of copepods, resulting in a high standard deviation between consecutive profiles. Based on the results we conclude that the time is mature for a more extensive use of optical instruments to estimate zooplankton abundances and distributions in the sea.
机译:我们比较了两个光学浮游生物计数器,即激光光学浮游生物计数器(LOPC)和视频浮游生物记录仪(VPR)在北挪威两个峡湾夏季初夏时(2008年6月)的丰度估计。为了对同一块水进行采样,将LOPC安装在VPR框架上。 LOPC和VPR的组合系统是通过在代表不同开花条件和浮游动物群落结构的峡湾的几个位置从表面到深度为100 m的垂直剖面进行操作的。同时记录了这两种仪器以及CTD-F的数据,并在约15个深度剖面后在甲板上进行了检索。根据标准程序分析原始数据,并讨论在采样和分析过程中做出的选择(采样量,大小范围的选择,颗粒的透明度,统计数据)。对每5、10和15m深度箱平均数据。分别通过LOPC和VPR获得的finmarchicus CIV-CVI丰度的垂直剖面显示出惊人的相似性。当将数据装箱到15 m箱中时,未观察到这两种仪器采样的剖面之间的显着差异。在低丰度(<100 Calanus sp。L〜(-1))下,将数据分装到5或10 m的分箱中时,轮廓明显不同。这归因于LOPC和VPR的小采样量,以及of足类动物非常零散的分布,从而导致连续剖面之间的标准差很高。根据这些结果,我们得出结论,现在更广泛地使用光学仪器来估计海洋中浮游动物的丰度和分布的时机已经成熟。

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  • 来源
    《Progress in Oceanography》 |2013年第1期|72-80|共9页
  • 作者单位

    Department of Aquatic Biosciences,Faculty of Biosciences, Fisheries and Economics,University of Tromso, N-9037 Tromso, Norway,Faculty of Biosciences and Aquaculture, University of Nordland, N-8049 Bodo, Norway;

    Faculty of Biosciences and Aquaculture, University of Nordland, N-8049 Bodo, Norway;

    Department of Aquatic Biosciences,Faculty of Biosciences, Fisheries and Economics,University of Tromso, N-9037 Tromso, Norway;

    Department of Aquatic Biosciences,Faculty of Biosciences, Fisheries and Economics,University of Tromso, N-9037 Tromso, Norway;

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  • 入库时间 2022-08-18 03:34:23

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