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不同环境条件下浮游游泳桡足类独特的扩散特性。

Distinctive diffusive properties of swimming planktonic copepods in different environmental conditions.

作者信息

Pastore Raffaele, Uttieri Marco, Bianco Giuseppe, Ribera d'Alcalá Maurizio, Mazzocchi Maria Grazia

机构信息

Department of Chemical, Materials and Production Engineering, Università di Napoli Federico II, Piazzale V. Tecchio 80, 80125, Napoli, Italy.

CNR-SPIN, Via Cintia, 80126, Napoli, Italy.

出版信息

Eur Phys J E Soft Matter. 2018 Jun 25;41(6):79. doi: 10.1140/epje/i2018-11688-5.

Abstract

Suspensions of small planktonic copepods represent a special category in the realm of active matter, as their size falls within the range of colloids, while their motion is so complex that it cannot be rationalized according to basic models of self-propelled particles. Indeed, the wide range of individual variability and swimming patterns resemble the behaviour of much larger animals. By analysing hundreds of three-dimensional trajectories of the planktonic copepod Clausocalanus furcatus, we investigate the possibility of detecting how the motion of this species is affected by different external conditions, such as the presence of food and the effect of gravity. While this goal is hardly achievable by direct inspection of single organism trajectories, we show that this is possible by focussing on simple average metrics commonly used to characterize colloidal suspensions, such as the mean square displacement and the dynamic correlation functions. We find that the presence of food leads to the onset of a clear localization that separates a short-time ballistic from a long-time diffusive regime. Such a benchmark reflects the tendency of C. furcatus to remain temporally feeding in a limited space and disappears when food is absent. Localization is clearly evident in the horizontal plane, but is negligible in the vertical direction, due to the effect of gravity. Our results suggest that simple average descriptors may provide concise and useful information on the swimming properties of planktonic copepods, even though single organism behaviour is strongly heterogeneous.

摘要

小型浮游桡足类动物的悬浮液在活性物质领域中代表着一个特殊类别,因为它们的大小处于胶体范围内,而它们的运动非常复杂,无法根据自推进粒子的基本模型进行合理解释。事实上,个体变异性和游泳模式的广泛范围类似于大型动物的行为。通过分析浮游桡足类动物叉胸哲水蚤(Clausocalanus furcatus)的数百条三维轨迹,我们研究了检测该物种的运动如何受到不同外部条件影响的可能性,例如食物的存在和重力的影响。虽然通过直接检查单个生物体的轨迹很难实现这一目标,但我们表明,通过关注通常用于表征胶体悬浮液的简单平均指标,如均方位移和动态相关函数,这是可能的。我们发现食物的存在会导致明显的定位开始,该定位将短时间的弹道运动与长时间的扩散运动区分开来。这样一个基准反映了叉胸哲水蚤在有限空间内保持暂时觅食的倾向,并且在没有食物时消失。由于重力的影响,定位在水平面上明显可见,但在垂直方向上可以忽略不计。我们的结果表明,即使单个生物体的行为具有很强的异质性,简单的平均描述符也可能提供有关浮游桡足类动物游泳特性的简洁而有用的信息。

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