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首页> 外文期刊>Ecological indicators >Early warning of Noctiluca scintillans blooms using in-situ plankton imaging system: An example from Dapeng Bay, P.R. China
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Early warning of Noctiluca scintillans blooms using in-situ plankton imaging system: An example from Dapeng Bay, P.R. China

机译:原位浮游生物成像系统对夜光闪烁藻开花的预警:以中国大鹏湾为例

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摘要

The frequency and intensity of harmful algal blooms (HABs) are likely to increase with climate change and increases in nutrients due to anthropogenic activities. To manage the environment and health threats to surrounding organisms, it is essential to improve our capability to provide early warning of harmful species. Using Noctiluca scintillans as example, a dinoflagellate that often blooms in Asia and whose presence is rapidly expanding worldwide, we demonstrate a potential way to predict N. scintillans blooms by deploying an in-situ plankton imaging system: PlanktonScope. PlanktonScope is a shadowgraph imaging system and capable of imaging organisms 40 mu m - 5 cm. This system was deployed in Shenzhen Bay, China, recording images at 0.5 Hz in April 2016. Using the automated image processing procedure, we found that PlanktonScope recorded nearly a full cycle of a N. scintillans bloom. A simple resource-limited logistic population growth model was then applied to develop a predictive framework for the outburst of N. scintillans. Environmental changes could explain the observed dynamics of N. scintillans; however, it was difficult to quantify the relationship between the dynamics of N. scintillans and environmental variables. Our study demonstrated that a camera system like PlanktonScope could be useful in developing an early warning system for N. scintillans blooms, which could be applicable to other HAB species for proactive management.
机译:有害藻华(HABs)的频率和强度可能随气候变化而增加,并且由于人为活动而导致养分增加。为了管理对周围生物的环境和健康威胁,必须提高我们提供有害物种预警的能力。以夜光藻(Noctiluca scintillans)为例,这种鞭毛藻经常在亚洲开花,并且其分布迅速在全球范围内扩展,我们展示了一种潜在的方法,可以通过部署原位浮游生物成像系统PlanktonScope来预测闪烁藻。 PlanktonScope是一个阴影图成像系统,能够对40微米-5厘米的生物成像。该系统已部署在中国深圳湾,于2016年4月以0.5 Hz的频率记录图像。使用自动图像处理程序,我们发现PlanktonScope记录了几乎一个闪烁的N. scintillans花朵的完整周期。然后,将一个简单的资源有限的后勤人口增长模型应用于为闪烁性猪笼草的爆发建立预测框架。环境的变化可以解释所观察到的闪烁藻的动态。但是,很难量化闪烁藻的动态变化与环境变量之间的关系。我们的研究表明,像PlanktonScope之类的摄像头系统可能对开发闪烁闪烁猪笼草大花病预警系统很有用,该系统可应用于其他HAB物种进行主动管理。

著录项

  • 来源
    《Ecological indicators》 |2020年第5期|106123.1-106123.13|共13页
  • 作者

  • 作者单位

    Tsinghua Univ Grad Sch Shenzhen Shenzhen Peoples R China;

    Univ Maryland Chesapeake Biol Lab Ctr Environm Sci Solomons MD 20688 USA;

    Louisiana State Univ Dept Oceanog & Coastal Sci Baton Rouge LA 70803 USA;

    Morgan State Univ Patuxent Environm & Aquat Res Lab St Leonard MD 20685 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Harmful algal blooms; Noctiluca scintillans; PlanktonScope; Plankton imaging; Machine learning; Early warning;

    机译:有害的藻华;夜光闪烁藻;浮游生物范围;浮游生物成像;机器学习;预先警告;

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