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A comparison of filtration rates among pelagic tunicates using kinematic measurements

机译:运动学测量对中上覆被膜滤过率的比较

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摘要

Salps have higher filtration rates than most other holoplankton, and are capable of packaging and exporting primary production from surface waters. A method of kinematic analysis was employed to accurately measure salp feeding rates. The data were then used to explain how diverse body morphologies and swimming motions among species and lifecycle stages influence salp feeding performance. We selected five species, representing a range of morphologies and swimming styles, and used digitized outlines from video frames to measure body-shape change during a pulse cycle. Time-varying body volume was then calculated from the digitized salp outlines to estimate the amount of fluid passing through the filtering mesh. This non-invasive method produced higher feeding rates than other methods and revealed that body volume, pulse frequency and degree of contraction are important factors for determining volume filtered. Each species possessed a unique combination of these three characteristics that resulted in comparable filtration (range: 0.44-15.33 ml s~(-1)) and normalized filtration rates (range: 0.21-1.27 s~(-1)) across species. The convergence of different species with diverse morphologies on similar normalized filtration suggests a tendency towards a flow optimum.
机译:鲑鱼的过滤率比大多数其他浮游生物高,并且能够包装和输出地表水的初级产品。运动学分析方法被用来精确地测量小腿的进食速度。然后,这些数据用于解释物种和生命周期各个阶段之间不同的身体形态和游泳运动如何影响小腿的进食性能。我们选择了5种,分别代表一系列的形态和游泳风格,并使用了视频帧中的数字化轮廓来测量脉冲周期内的身体形状变化。然后根据数字化的轮廓轮廓计算随时间变化的人体体积,以估算通过过滤网的流体量。这种非侵入性方法比其他方法产生更高的进食速度,并且表明身体体积,脉搏频率和收缩程度是确定过滤体积的重要因素。每个物种都具有这三个特征的独特组合,从而可在整个物种中实现相当的过滤(范围:0.44-15.33 ml s〜(-1))和标准化过滤速率(范围:0.21-1.27 s〜(-1))。在相似的归一化过滤条件下,具有不同形态的不同物种的趋同表明了流动最优化的趋势。

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  • 来源
    《Marine biology 》 |2010年第4期| 755-764| 共10页
  • 作者单位

    Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA;

    rnBiology Department, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA;

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