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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Hydrodynamic trail following in a California sea lion (Zalophus californianus)
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Hydrodynamic trail following in a California sea lion (Zalophus californianus)

机译:加利福尼亚海狮(Zalophus californianus)的水动力追踪

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摘要

The mystacial vibrissae of pinnipeds constitute a sensory system for active touch and detection of hydrodynamic events. Harbour seals (Phoca vitulina) and California sea lions (Zalophus californianus) can both detect hydrodynamic stimuli caused by a small sphere vibrating in the water (hydrodynamic dipole stimuli). Hydrodynamic trail following has only been shown in harbour seals. Hydrodynamical and biomechanical studies of single vibrissae of the two species showed that the specialized undulated structure of harbour seal vibrissae, as opposed to the smooth structure of sea lion vibrissae, suppresses self-generated noise in the actively moving animal. Here we tested whether also sea lions were able to perform hydrodynamic trail following in spite of their non-specialized hair structure. Hydrodynamic trails were generated by a remote-controlled miniature submarine. Linear trails could be followed with high accuracy, comparable to the performance of harbour seals, but in contrast, increasing delay resulted in a reduced performance as compared to harbour seals. The results of this study are consistent with the hypothesis that structural differences in the vibrissal hair types of otariid compared to phocid pinnipeds lead to different sensitivity of the vibrissae during forward swimming, but still reveal a good performance even in the species with non-specialized hair type.
机译:针刺的神秘的触须构成了一种主动接触和检测水动力事件的感觉系统。斑海豹(Phoca vitulina)和加利福尼亚海狮(Zalophus californianus)都可以检测到由小球在水中振动引起的水动力刺激(水动力偶极刺激)。流体动力跟踪仅在海豹中显示。对这两个物种的单个触须进行的流体力学和生物力学研究表明,与海狮触须的光滑结构相反,斑海豹触须的专门起伏结构抑制了活跃运动动物的自生噪声。在这里,我们测试了海狮尽管没有特殊的毛发结构,但是否也能够进行流体动力追踪。水动力路径是由一艘遥控微型潜艇产生的。与海港海豹的性能相当,可以高精度跟踪直线轨迹,但是相比之下,与海港海豹相比,延迟的增加导致性能下降。这项研究的结果与以下假设相吻合:在与前者游泳过程中,OTARIID的唇形毛发类型结构与phopin夹捏的结构差异会导致触毛的敏感性不同,但即使在非专业毛发的物种中,仍然显示出良好的性能。类型。

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