首页> 外文期刊>Chemical Senses >Fluid Dynamic Design of Lobster Olfactory Organs: High Speed Kinematic Analysis of Antennule Flicking by Panulirus argus
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Fluid Dynamic Design of Lobster Olfactory Organs: High Speed Kinematic Analysis of Antennule Flicking by Panulirus argus

机译:龙虾嗅器官的流体动力学设计:浮游龙虾浮游动物的高速运动学分析。

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摘要

Many organisms use olfactory appendages bearing arrays of microscopic hairs to pick up chemical signals from the surrounding water or air. We report a morphometric and high speed kinematic analysis of the olfactory organs (lateral flagella of the antennules, which bear chemosensory aesthetasc hairs) of the spiny lobster, Panulirus argus. Panulirus argus sample specific locations by executing a rapid series of antennule flicks at one position, moving the antennule to a different spot and then performing another series of flicks. Odorant delivery to an aesthetasc depends on the water motion near it, which depends on its Reynolds number (Re, proportional to both the diameter and speed of the hair). High speed video en~bled us to resolve that during a series of fiick~, an antennule moves down rapidly (aesthetasc Re = 2) and up more slowly (Re = 0.5), pausing briefly (-0.54 s) before the next downstroke. The antennules of I? argus operate in a range of Re values and inter- aesthetasc spacings in which penetration of fluid between the hairs in an array is especially sensitive to changes in speed. Therefore, when antennules flick 'old' water is flushed out of the aesthetasc array during the leaky downstroke and is not picked up again during the less leaky upstroke, hence the antennules can take discrete samples. Thus, Py operating in this critical Re range these antennules should be particularly effective at sniffing.
机译:许多生物都使用带有微小毛发阵列的嗅觉附件来吸收周围水或空气中的化学信号。我们报告了形态学和高速运动学分析的刺龙虾,Panulirus阿古斯的嗅觉器官(触角的外侧鞭毛,具有化学感觉上的麻醉毛)。 Panulirus argus通过在一个位置执行一系列快速的触角甩动,将触角移到另一个点然后执行另一系列的甩动来采样特定位置。麻醉剂的气味传递取决于其附近的水运动,这取决于其雷诺数(Re,与头发的直径和速度成正比)。高速视频使我们得以解决,在一系列轻弹期间,瓣膜快速向下移动(麻醉Re = 2),然后缓慢上升(Re = 0.5),在下一次下冲程之前短暂地暂停(-0.54 s)。我的触角?氩气在Re值和麻醉间隔之间的范围内工作,其中阵列中的毛发之间的流体渗透对速度变化特别敏感。因此,当在漏气的下行冲程中,轻弹的“前”瓣水从麻醉剂阵列中冲出,而在漏气较小的上行冲程中,水又没有被吸走,因此,这些血管可以采集离散的样本。因此,在这个关键的Re范围内运行的Py,这些环应该在嗅探方面特别有效。

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