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Form and function of the teleost lateral line revealed using three-dimensional imaging and computational fluid dynamics

机译:利用三维成像和计算流体动力学揭示硬骨的侧向线的形式和功能

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摘要

Fishes sense weak water motion using the lateral line. Among the thousands of described fish species, this organ may differ in size, shape and distribution of individual mechanoreceptors or lateral line canals. The reasons for this diversity remain unclear, but are very likely related to habitat preferences. To better understand the performance of the organ in natural hydrodynamic surroundings, various three-dimensional imaging datasets of the cephalic lateral line were gathered using Leuciscus idus as representative freshwater teleost. These data are employed to simulate hydrodynamic phenomena around the head and within lateral line canals. The results show that changes in canal dimensions alter the absolute stimulation amplitudes, but have little effect on the relation between bulk water flow and higher frequency signals. By contrast, depressions in the skin known as epidermal pits reduce bulk flow stimulation and increase the ratio between higher-frequency signals and the background flow stimulus.
机译:鱼使用侧线感觉水运动微弱。在描述的数千种鱼类中,该器官的大小,形状和单个机械感受器或侧线管的分布可能不同。这种多样性的原因尚不清楚,但很可能与栖息地的偏好有关。为了更好地了解器官在自然水动力环境中的性能,使用内隐尾藻作为代表的淡水硬骨鱼收集了头侧线的各种三维影像数据集。这些数据用于模拟水头周围和侧线槽内的水动力现象。结果表明,渠道尺寸的变化会改变绝对刺激幅度,但对总体水流量与高频信号之间的关系影响很小。相比之下,被称为表皮凹坑的皮肤凹陷会减少整体流量刺激,并增加高频信号与背景流量刺激之间的比率。

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