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Stress and Auditory Responses of the Otophysan Fish Cyprinella venusta to Road Traffic Noise

机译:音囊藻鱼(Cyprinella venusta)对道路交通噪声的压力和听觉响应

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摘要

Noise pollution from anthropogenic sources is an increasingly problematic challenge faced by many taxa, including fishes. Recent studies demonstrate that road traffic noise propagates effectively from bridge crossings into surrounding freshwater ecosystems; yet, its effect on the stress response and auditory function of freshwater stream fishes is unexamined. The blacktail shiner (Cyprinella venusta) was used as a model to investigate the degree to which traffic noise impacts stress and hearing in exposed fishes. Fish were exposed to an underwater recording of traffic noise played at approximately 140 dB re 1 μPa. Waterborne cortisol samples were collected and quantified using enzyme immunoassay (EIA). Auditory thresholds were assessed in control and traffic exposed groups by measuring auditory evoked potentials (AEPs). After acute exposure to traffic noise, fish exhibited a significant elevation in cortisol levels. Individuals exposed to 2 hours of traffic noise playback had elevated hearing thresholds at 300 and 400 Hz, corresponding to the most sensitive bandwidth for this species.
机译:人为来源的噪声污染已成为包括鱼类在内的许多分类单元面临的日益严峻的挑战。最近的研究表明,道路交通噪声有效地从桥梁交叉口传播到周围的淡水生态系统。然而,其对淡水河鱼类的应激反应和听觉功能的影响尚待研究。黑尾发光器(Cyprinella venusta)被用作模型来研究交通噪声对裸露鱼类的压力和听力的影响程度。鱼在水下录制了约140 dB re 1μPa的交通噪音记录。收集水性皮质醇样品,并使用酶免疫法(EIA)进行定量。通过测量听觉诱发电位(AEP),在对照组和交通暴露人群中评估听觉阈值。急性暴露于交通噪声后,鱼的皮质醇水平显着升高。暴露于2小时交通噪音中的人的听力阈值升高了300和400 Hz,对应于该物种的最敏感带宽。

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