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首页> 外文期刊>Hydrobiologia >Abundance and patchiness of Chrysaora quinquecirrha medusae from a high-frequency time series in the Choptank River, Chesapeake Bay, USA
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Abundance and patchiness of Chrysaora quinquecirrha medusae from a high-frequency time series in the Choptank River, Chesapeake Bay, USA

机译:Chespeake Bay,Chesapeake Bay,Chesapeake Bay,Chespeake Bay,Chorysaora Quinquecirha Medusae的丰满和斑点

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摘要

Despite strong control over marine plankton dynamics and negative impacts on human activities, jellyfish are not well quantified due primarily to sampling difficulties with nets. Therefore, some of the longest records of jellyfish are visual shore-based surveys. As surface counting is inexpensive and simple, it is of interest to determine what can be learned from such records as well as the usefulness of the method. We analyzed a 4-year high-frequency time series of Chrysaora quinquecirrha medusa counts collected using three sampling methods in the Choptank River, Chesapeake Bay. Medusa abundance was modeled by change points and was highly correlated between the sampling methods. The remaining signal was random, and indices of aggregation [fit to the Poisson distribution, Taylor's Power Law (TPL), and Morisita's Index] indicated that medusae were aggregated. TPL suggested that patches grew in the number of individuals as abundance increased. Additionally, a simple conceptualization of where the time series sampled in space revealed that the upper bound of patch size was on the order of kilometers. Our results enhance the knowledge of local C. quinquecirrha abundance and patchiness, alluding to processes that generate these patterns. This study also provides direction for improving population monitoring from visual shore-based surveys.
机译:尽管对海洋浮游生物动态和对人类活动的负面影响有很强的控制,但Jellyfish不会很好地量化,主要是对网的抽样困难。因此,一些最长记录的水母是基于视觉岸上的调查。随着表面计数廉价且简单,可以确定可以从这些记录中学到的内容以及方法的有用性来实现。我们分析了在Chesapeake湾Chesapeake湾的三种采样方法收集的Chrysaora Quinquecirha Medusa计数的4年的高频时间系列。 MEDUSA丰富由变化点建模,采样方法之间具有高度相关性。其余信号是随机的,聚集指数[适合泊松分布,泰勒的权力法(TPL)和Morisita的指数]表明Metusae被汇总。 TPL表明,随着丰富的增加,斑块增加了个体的数量。另外,空间中采样的时间序列的位置简单概念化显示,贴片尺寸的上限约为千米。我们的成果提高了本地C. Quinquecrha丰富和斑块的知识,提及生成这些模式的过程。本研究还提供了改善基于视觉岸上的调查的人口监测的方向。

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