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Lateral line canal morphology and signal to noise ratio

机译:横向线管形态和信噪比

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The lateral line system of fish is important for many behaviors, including spatial orientation, prey detection, shoaling, intraspecific communication and entraining. The smallest sensory unit of the lateral line is the neuromast that occurs free standing on the skin and in fluid filled canals. With aid of the lateral line fish perceive minute water motions. In their natural habitat fish are not only faced with biotic water motion but also with the abiotic fluctuations caused by various inanimate sources. The detection of meaningful signals is crucial for survival, and therefore animals should be able to separate meaningful signals from noise. Fishes live in various habitats (e.g. in still water or in running water). Therefore it is not surprising that the number and distribution of neuromasts as well as canal dimension, canal shape and canal branching patterns differ among fish species. We studied how lateral line canal parameters influence the filter properties of lateral line canals. To do so we exposed artificial lateral line canals, equipped with artificial neuromasts (sensors), to the vortex street shed by a submerged cylinder and to air bubble noise. We found that certain canal parameters significantly can enhance the signal to noise ratio.
机译:鱼类的横向线系统对于许多行为来说都很重要,包括空间取向,猎物检测,挖掘,拆卸沟通和录制。横向线最小的感觉单位是发生在皮肤上和流体填充的运河上自由站立的神经孢子。借助侧线鱼感知微小的水运动。在他们的天然栖息地,鱼类不仅面对生物水运动,而且涉及由各种无生命来源引起的非生物波动。有意义的信号的检测对于生存至关重要,因此动物应该能够将有意义的信号与噪声分开。鱼类生活在各种栖息地(例如,在水中或自来水中)。因此,神经孢子的数量和分布以及管尺寸,运河形状和管分支模式不同并不令人惊讶的是鱼种。我们研究了横向管道参数如何影响横向线运河的过滤器性能。为此,我们暴露于用人工神经孢子(传感器)的人工横向线运河,由浸没式圆筒和气泡噪声的涡旋街道。我们发现某些管道参数显着可以提高信噪比。

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