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ADVERTISEMENT AND CONCEALMENT IN THE PLANKTON - WHAT MAKES A COPEPOD HYDRODYNAMICALLY CONSPICUOUS

机译:浮游生物中的广告和隐蔽性-是什么使COPDOD HYDODYDYNAMICS

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Euchaeta rimana, a pelagic marine copepod, roams a 3-dimensional environment and its antennular setal sensors are oriented to detect water-borne signals in 3 dimensions. When the copepod moves through water or moves water around itself, it creates a fluid disturbance distinct from the ambient fluid motion. As it swims and hovers, the copepod's laminar feeding current takes the unstable nature of small-scale turbulence, organizes it, and makes the local domain a familiar territory within which signals can be specified in time and space. The streamlines betray both the 3-dimensional spatial location (x, y, z) as well as the time (t) separating a signal caught in the feeding current and the copepod receptor-giving the copepod early warning of the approach of a prey, predator, or mate. The copepod reduces the complexity of its environment by fixing information from a turbulent field into a simpler, more defined laminar field. We quantitatively analysed small-scale fluid deformations created by copepods to document the strength of the signal. Physiological and behavioral tests confirm (a) that these disturbances are relevant signals transmitting information between zooplankters and (b) that hydrodynamically conspicuous structures, such as feeding currents, wakes, and vibrations, elicit specific responses from copepods. Since fluid mechanical signals do elicit responses, copepods shape their fluid motion to advertise or to conceal their hydrodynamic presence. When swimming, a copepod barely leaves a trace in the water; the animal generates its flow and advances into the area from which the water is taken, covering up its tracks with the velocity gradient it creates around itself. When escaping, it sheds conspicuous vortices. Prey caught in a flow field expose their location by hopping. These escape hops shed jet-like wakes detected by copepod mechanoreceptors. Copepods recognize the wakes and respond adaptively. [References: 82]
机译:Euchaeta rimana是中上层海洋marine足类动物,在3维环境中漫游,其环形固定传感器被定向为可检测3维水上信号。当the足动物在水中移动或在自己周围移动时,会产生与周围流体运动不同的流体扰动。 pe足类的层流摄食电流在其游动和盘旋时,具有小规模湍流的不稳定性质,将其组织起来,并使本地域成为可以在时间和空间中指定信号的熟悉区域。精简流露了3维空间位置(x,y,z)以及将馈入电流和co足类受体捕获的信号分开的时间(t),从而为co足类动物接近提供了预警。捕食者或伴侣。 pe足类通过将信息从湍流场固定到更简单,更明确的层流场中来降低其环境的复杂性。我们定量分析了pe足类动物造成的小规模流体变形,以记录信号强度。生理和行为测试证实(a)这些干扰是在浮游动物之间传递信息的相关信号,并且(b)流体动力学上显着的结构(例如进食电流,尾流和振动)引起了co足类动物的特定反应。由于流体机械信号确实会引起响应,因此co足动物会塑造其流体运动,以做广告或掩盖其流体动力的存在。游泳时,a足类在水中几乎不留痕迹。动物产生它的水流并前进到取水的区域,并用它在自身周围产生的速度梯度覆盖其轨迹。逃逸时,它会散发出明显的漩涡。被捕获在流场中的猎物通过跳跃来暴露它们的位置。这些逃逸跃出了co足类机械感受器检测到的喷射状尾流。 pe足类动物能够识别唤醒并做出自适应反应。 [参考:82]

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