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Particle tracking in a salinity gradient: A method for measuring sinking rate of individual phytoplankton in the laboratory

机译:盐度梯度中的粒子追踪:一种在实验室中测量单个浮游植物下沉率的方法

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摘要

This paper presents a new method to measure the sinking rates of individual phytoplankton “particles” (cells, chains, colonies, and aggregates) in the laboratory. Conventional particle tracking and high resolution video imaging were used to measure particle sinking rates and particle size. The stabilizing force of a very mild linear salinity gradient (1 ppt over 15 cm) prevented the formation of convection currents in the laboratory settling chamber. Whereas bulk settling methods such as SETCOL provide a single value of sinking rate for a population, this method allows the measurement of sinking rate and particle size for a large number of individual particles or phytoplankton within a population. The method has applications where sinking rates vary within a population, or where sinking rate-size relationships are important. Preliminary data from experiments with both laboratory and field samples of marine phytoplankton are presented here to illustrate the use of the technique, its applications, and limitations. Whereas this paper deals only with sinking phytoplankton, the method is equally valid for positively buoyant species, as well as nonbiological particles.
机译:本文提出了一种测量实验室中单个浮游植物“颗粒”(细胞,链,菌落和聚集体)下沉率的新方法。传统的颗粒跟踪和高分辨率视频成像用于测量颗粒沉降率和颗粒尺寸。非常轻的线性盐度梯度(15 cm上1 ppt)的稳定力可防止在实验室沉降室中形成对流。尽管散装沉降方法(例如SETCOL)为种群提供了一个下沉率的单一值,但是这种方法可以测量种群内大量单个颗粒或浮游植物的下沉率和粒径。该方法在人群中下沉率变化或下沉率-大小关系很重要的应用中。这里展示了来自海洋浮游植物的实验室样本和野外样本的实验的初步数据,以说明该技术的使用,其应用和局限性。尽管本文仅涉及沉没的浮游植物,但该方法对于正浮力物种以及非生物颗粒同样有效。

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