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金鱼和奥斯卡鱼对偶极子刺激的反应性相当。

Goldfish and oscars have comparable responsiveness to dipole stimuli.

作者信息

Nauroth Ines Eva, Mogdans Joachim

机构信息

Institut für Zoologie, Universität Bonn, Poppelsdorfer Schloss, 53115, Bonn, Germany.

出版信息

Naturwissenschaften. 2009 Dec;96(12):1401-9. doi: 10.1007/s00114-009-0593-y. Epub 2009 Aug 5.

Abstract

The relative roles of the fish lateral line and inner ear for the perception of hydrodynamic stimuli are poorly investigated. Here, we studied responsiveness to a 100 Hz vibrating sphere (dipole stimulus) of goldfish and oscars, two species that differ in peripheral lateral line morphology, inner ear morphology, mechanical linkage between inner ear and swim bladder, and inner ear sensitivity. We measured unconditioned dipole-evoked changes in breathing activity in still water and in the presence of a 5-cm s(-1) background flow. In still water, individuals from both species responded to sound pressure levels (SPLs) between 92 and 109 dB SPL re 1 microPa(RMS). Responsiveness was not affected by background flow or by temporary inactivation of the lateral line. The data suggest that fish with different lateral line and inner ear morphologies have similar sensitivities to vibrating sphere stimuli and can detect and respond to dipole sources equally well in still water and in moderate background flows. Moreover, behavioral responses were not dependent on a functional lateral line, suggesting that in this type of experiment, the inner ear is the dominant sense organ for the perception of hydrodynamic stimuli.

摘要

鱼类侧线和内耳在水动力刺激感知中的相对作用尚未得到充分研究。在此,我们研究了金鱼和奥斯卡鱼对100赫兹振动球(偶极子刺激)的反应,这两种鱼在外周侧线形态、内耳形态、内耳与鱼鳔之间的机械连接以及内耳敏感性方面存在差异。我们测量了在静水中以及存在5厘米/秒背景水流时,偶极子诱发的呼吸活动无条件变化。在静水中,两种鱼的个体对92至109分贝声压级(相对于1微帕均方根值)的声音压力水平有反应。反应性不受背景水流或侧线暂时失活的影响。数据表明,具有不同侧线和内耳形态的鱼类对振动球刺激具有相似的敏感性,并且在静水中和适度背景水流中都能同样良好地检测和响应偶极子源。此外,行为反应不依赖于功能性侧线,这表明在这类实验中,内耳是感知水动力刺激的主要感觉器官。

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