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硬骨鱼美洲西鲱(Alosa sapidissima)对超声波音调及模拟海豚回声定位咔哒声的检测。

Detection of ultrasonic tones and simulated dolphin echolocation clicks by a teleost fish, the American shad (Alosa sapidissima).

作者信息

Mann D A, Lu Z, Hastings M C, Popper A N

机构信息

Department of Zoology, University of Maryland, College Park 20742, USA.

出版信息

J Acoust Soc Am. 1998 Jul;104(1):562-8. doi: 10.1121/1.423255.

Abstract

The authors previously reported that American shad (Alosa sapidissima) can detect sounds from 100 Hz to 180 kHz, with two regions of best sensitivity, one from 200 to 800 Hz and the other from 25 to 150 kHz [Mann et al., Nature 389, 341 (1997)]. These results demonstrated ultrasonic hearing by shad, but thresholds at lower frequencies were potentially masked by background noise in the experimental room. In this study, the thresholds of the American shad in a quieter and smaller tank, as well as thresholds for detecting stimulated echolocation sounds of bottlenosed dolphins was determined. Shad had lower thresholds for detection (from 0.2 to 0.8 kHz) in the quieter and smaller tank compared with the previous experiment, with low-frequency background noise but similar thresholds at ultrasonic frequencies. Shad were also able to detect echolocation clicks with a threshold of 171 dB re: 1 microPa peak to peak. If spherical spreading and an absorption coefficient of 0.02 dB/m of dolphin echolocation clicks are assumed, shad should be able to detect echolocating Tursiops truncatus at ranges up to 187 m. The authors propose that ultrasonic hearing evolved in shad in response to selection pressures from echolocating odontocete cetaceans.

摘要

作者之前报道过美洲西鲱(Alosa sapidissima)能够探测到100赫兹至180千赫兹的声音,有两个最佳敏感区域,一个在200至800赫兹之间,另一个在25至150千赫兹之间[曼恩等人,《自然》389, 341 (1997)]。这些结果证明了西鲱具有超声听觉,但较低频率下的阈值可能被实验室背景噪音掩盖。在本研究中,测定了美洲西鲱在更安静、更小的水箱中的阈值,以及探测宽吻海豚刺激回声定位声音的阈值。与之前的实验相比,西鲱在更安静、更小的水箱中探测阈值更低(0.2至0.8千赫兹),低频背景噪音较低,但超声频率下的阈值相似。西鲱还能够探测到回声定位咔嗒声,阈值为171分贝(相对于1微帕峰峰值)。如果假设海豚回声定位咔嗒声的球面扩展和吸收系数为0.02分贝/米,那么西鲱应该能够在距离高达187米处探测到正在回声定位的宽吻海豚。作者提出,超声听觉在西鲱中进化是为了应对来自回声定位齿鲸类鲸目的选择压力。

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