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平鳍美洲蟾鱼听觉囊敏感性的个体发生。

Ontogeny of auditory saccular sensitivity in the plainfin midshipman fish, Porichthys notatus.

机构信息

Department of Psychology, University of Washington, Guthrie Hall, Box 351525, Seattle, WA 98195, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2011 Apr;197(4):387-98. doi: 10.1007/s00359-010-0623-4. Epub 2011 Jan 19.

DOI:10.1007/s00359-010-0623-4
PMID:21246201
Abstract

The auditory system of the plainfin midshipman fish, Porichthys notatus, is an important sensory receiver system used to encode intraspecific social communication signals in adults, but the response properties and function of this receiver system in pre-adult stages are less known. In this study we examined the response properties of auditory-evoked potentials from the midshipman saccule, the main organ of hearing in this species, to determine whether the frequency response and auditory threshold of saccular hair cells to behaviorally relevant single tone stimuli change during ontogeny. Saccular potentials were recorded from three relative sizes of midshipman fish: small juveniles [1.9-3.1 cm standard length (SL), large juveniles (6.8-8.0 cm SL) and non-reproductive adults (9.0-22.6 cm SL)]. The auditory evoked potentials were recorded from the rostral, middle and caudal regions of the saccule while single tone stimuli (75-1,025 Hz) were presented via an underwater speaker. We show that the frequency response and auditory threshold of the midshipman saccule is established early in development and retained throughout ontogeny. We also show that saccular sensitivity to frequencies greater than 385 Hz increases with age/size and that the midshipman saccule of small and large juveniles, like that of non-reproductive adults, is best suited to detect low frequency sounds (<105 Hz) in their natural acoustic environment.

摘要

平鳍美洲蟾鱼的听觉系统是一种重要的感觉接收系统,用于在成年个体中对种内社会通讯信号进行编码,但该接收系统在幼体阶段的反应特性和功能知之甚少。在本研究中,我们检测了平鳍美洲蟾鱼的耳石听觉诱发电位的反应特性,以确定耳石毛细胞对行为相关单音刺激的频率响应和听觉阈值是否在个体发育过程中发生变化。从小个体(1.9-3.1 cm 标准体长 [SL])、大个体(6.8-8.0 cm SL)和非繁殖成年个体(9.0-22.6 cm SL)中记录了耳石电位。通过水下扬声器向耳石的额区、中区和尾区呈现单音刺激(75-1025 Hz),同时记录听觉诱发电位。结果表明,平鳍美洲蟾鱼的耳石的频率响应和听觉阈值在发育早期就已确立,并在整个个体发育过程中保持不变。我们还发现,耳石对高于 385 Hz 的频率的敏感性随年龄/大小而增加,并且小个体和大个体的耳石与非繁殖成年个体的耳石一样,最适合检测其天然声环境中的低频声音(<105 Hz)。

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