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Fluid Interactions That Enable Stealth Predation by the Upstream-Foraging Hydromedusa Craspedacusta Sowerbyi

机译:流体相互作用使上游觅食的水med水母Craspedacusta Sowerbyi能够进行隐身捕食

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摘要

Unlike most medusae that forage with tentacles trailing behind their bells, several species forage upstream of their bells using aborally located tentacles. It has been hypothesized that these medusae forage as stealth predators by placing their tentacles in more quiescent regions of flow around their bells. Consequently, they are able to capture highly mobile, sensitive prey. We used digital particle image velocimetry (DPIV) to quantitatively characterize the flow field around Craspedacusta sowerbyi, a freshwater upstream-foraging hydromedusa, to evaluate the mechanics of its stealth predation. We found that fluid velocities were minimal in front and along the sides of the bell where the tentacles are located. As a result, the deformation rates in the regions where the tentacles are located were low, below the threshold rates required to elicit an escape response in several species of copepods. Estimates of their encounter volume rates were examined on the basis of flow past the tentacles, and trade-offs associated with tentacle characteristics were evaluated.
机译:与大多数美杜莎在其铃铛后面拖着触角觅食不同,几种物种使用位于北极的触角在铃铛上游觅食。据推测,这些美杜鹃通过将触角放在钟声周围的更静止的流动区域中而作为隐形捕食者觅食。因此,它们能够捕获高度移动的敏感猎物。我们使用数字粒子图像测速仪(DPIV)定量表征了淡水上游觅食水母水母Craspedacusta sowerbyi周围的流场,以评估其隐形捕食的机理。我们发现,在触角所在的钟形的前面和侧面,流体速度最小。结果,触角所在区域的变形率很低,低于在几种pe足类动物中引起逃逸反应所需的阈值率。根据流过触手的流量来评估它们的遭遇体积率,并评估与触手特征相关的权衡。

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