首页> 外文期刊>The Journal of Experimental Biology >The flow fields involved in hydrodynamic imaging by blind Mexican cave fish (Astyanax fasciatus). Part II: gliding parallel to a wall
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The flow fields involved in hydrodynamic imaging by blind Mexican cave fish (Astyanax fasciatus). Part II: gliding parallel to a wall

机译:墨西哥盲鱼(Astyanax fasciatus)参与水动力成像的流场。第二部分:平行于墙壁滑动

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摘要

Blind Mexican cave fish (Astyanax fasciatus) are able to sense detailed information about objects by gliding alongside them and sensing changes in the flow field around their body using their lateral line sensory system. Hence the fish are able to build hydrodynamic images of their surroundings. This study measured the flow fields around blind cave fish using particle image velocimetry (PIV) as they swam parallel to a wall. Computational fluid dynamics models were also used to calculate the flow fields and the stimuli to the lateral line sensory system. Our results showed that characteristic changes in the form of the flow field occurred when the fish were within approximately 0.20 body lengths (BL) of a wall. The magnitude of these changes increased steadily as the distance between the fish and the wall was reduced. When the fish were within 0.02 BL of the wall there was a change in the form of the flow field owing to the merging of the boundary layers on the body of the fish and the wall. The stimuli to the lateral line appears to be sufficient for fish to detect walls when they are 0.10 BL away (the mean distance at which they normally swim from a wall), but insufficient for the fish to detect a wall when 0.25 BL away. This suggests that the nature of the flow fields surrounding the fish are such that hydrodynamic imaging can only be used by fish to detect surfaces at short range.
机译:墨西哥盲鱼(Astyanax fasciatus)能够通过与物体并排滑动并利用其侧线感官系统感知其周围流场的变化来感知有关物体的详细信息。因此,鱼能够建立周围环境的水动力图像。这项研究使用粒子图像测速(PIV)方法测量了盲洞鱼在平行于墙壁的位置游泳时的流场。计算流体动力学模型也用于计算流场和对侧线感觉系统的刺激。我们的结果表明,当鱼在壁的约0.20体长(BL)内时,流场形式发生了特征性变化。随着鱼与壁之间的距离减小,这些变化的幅度稳步增加。当鱼在壁的0.02 BL以内时,由于鱼体和壁上边界层的合并,流场的形式发生了变化。对侧线的刺激似乎足以使鱼类在距鱼壁0.10 BL(它们通常从壁上游泳的平均距离)处检测到壁时,但对于鱼在距湖壁0.25 BL处检测壁时不足。这表明鱼周围流场的性质使得流体动力学成像只能被鱼用来检测短距离表面。

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