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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Auditory evoked potential audiometry in fish
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Auditory evoked potential audiometry in fish

机译:鱼的听觉诱发电位测听

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A recent survey lists more than 100 papers utilizing the auditory evoked potential (AEP) recording technique for studying hearing in fishes. More than 95 % of these AEP-studies were published after Kenyon et al. introduced a non-invasive electrophysiological approach in 1998 allowing rapid evaluation of hearing and repeated testing of animals. First, our review compares AEP hearing thresholds to behaviorally gained thresholds. Second, baseline hearing abilities are described and compared in 111 fish species out of 51 families. Following this, studies investigating the functional significance of various accessory hearing structures (Weberian ossicles, swim bladder, otic bladders) by eliminating these morphological structures in various ways are dealt with. Furthermore, studies on the ontogenetic development of hearing are summarized. The AEP-technique was frequently used to study the effects of high soundoise levels on hearing in particular by measuring the temporary threshold shifts after exposure to various noise types (white noise, pure tones and anthropogenic noises). In addition, the hearing thresholds were determined in the presence of noise (white, ambient, ship noise) in several studies, a phenomenon termed masking. Various ecological (e.g., temperature, cave dwelling), genetic (e.g., albinism), methodical (e.g., ototoxic drugs, threshold criteria, speaker choice) and behavioral (e.g., dominance, reproductive status) factors potentially influencing hearing were investigated. Finally, the technique was successfully utilized to study acoustic communication by comparing hearing curves with sound spectra either under quiet conditions or in the presence of noise, by analyzing the temporal resolution ability of the auditory system and the detection of temporal, spectral and amplitude characteristics of conspecific vocalizations.
机译:最近的一项调查列出了100多篇利用听觉诱发电位(AEP)记录技术研究鱼类听力的论文。这些AEP研究的95%以上是在Kenyon等人之后发表的。于1998年推出了一种非侵入性电生理方法,可以快速评估听力并重复测试动物。首先,我们将AEP听力阈值与行为获得的阈值进行比较。其次,描述并比较了51个家族中111种鱼类的基本听力。此后,研究了通过各种方式消除这些形态结构来研究各种辅助听力结构(韦伯小骨,游泳膀胱,耳囊)的功能重要性的研究。此外,总结了关于听力本体发育的研究。 AEP技术通常用于研究高声/噪级对听力的影响,尤其是通过测量暴露于各种噪声类型(白噪声,纯音和人为噪声)后的临时阈值偏移来进行研究。此外,在一些研究中,在存在噪音(白噪声,环境噪声,轮船噪声)的情况下,确定了听力阈值,这种现象被称为掩蔽现象。研究了可能影响听力的各种生态因素(例如温度,洞穴居住),遗传因素(例如白化病),方法性因素(例如耳毒性药物,阈值标准,说话者选择)和行为因素(例如优势地位,生殖状态)。最后,通过在安静条件下或存在噪声的情况下将听觉曲线与声谱进行比较,分析听觉系统的时间分辨能力以及检测声谱的时间,频谱和幅度特征,该技术已成功用于研究声学通信。具体的发声。

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