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宽吻海豚在暴露于中心频率为 8 kHz 的 10 毫秒脉冲后产生的暂时阈移(a)。

Bottlenose dolphin temporary threshold shift following exposure to 10-ms impulses centered at 8 kHza).

机构信息

National Marine Mammal Foundation, 2240 Shelter Island Drive, Suite 200, San Diego, California 92106, USA.

Peraton Corporation, 4045 Hancock Street, Suite 210, San Diego, California 92110, USA.

出版信息

J Acoust Soc Am. 2023 Aug 1;154(2):1287-1298. doi: 10.1121/10.0020726.

Abstract

Studies of marine mammal temporary threshold shift (TTS) from impulsive sources have typically produced small TTS magnitudes, likely due to much of the energy in tested sources lying below the subjects' range of best hearing. In this study of dolphin TTS, 10-ms impulses centered at 8 kHz were used with the goal of inducing larger magnitudes of TTS and assessing the time course of hearing recovery. Most impulses had sound pressure levels of 175-180 dB re 1 μPa, while inter-pulse interval (IPI) and total number of impulses were varied. Dolphin TTS increased with increasing cumulative sound exposure level (SEL) and there was no apparent effect of IPI for exposures with equal SEL. The lowest TTS onset was 184 dB re 1 μPa2s, although early exposures with 20-s IPI and cumulative SEL of 182-183 dB re 1 μPa2s produced respective TTS of 35 and 16 dB in two dolphins. Continued testing with higher SELs up to 191 dB re 1 μPa2s in one of those dolphins, however, failed to result in TTS greater than 14 dB. Recovery rates were similar to those from other studies with non-impulsive sources and depended on the magnitude of the initial TTS.

摘要

海洋哺乳动物的瞬态阈值偏移(TTS)研究表明,源自脉冲源的 TTS 通常幅度较小,这可能是因为测试源中的大部分能量都低于受试动物最佳听力范围。在这项海豚 TTS 研究中,使用了中心频率为 8kHz 的 10ms 脉冲,目的是诱导更大幅度的 TTS,并评估听力恢复的时间过程。大多数脉冲的声压级为 175-180dB 相对于 1μPa,而脉冲间隔(IPI)和脉冲总数则有所变化。海豚 TTS 随累积声暴露级(SEL)的增加而增加,对于具有相同 SEL 的暴露,IPI 没有明显影响。TTS 的最低起始值为 184dB 相对于 1μPa2s,尽管在两只海豚中,20s 的 IPI 和累积 SEL 为 182-183dB 相对于 1μPa2s 的早期暴露分别产生了 35 和 16dB 的 TTS。然而,在其中一只海豚中继续进行更高 SEL 的测试,直至 191dB 相对于 1μPa2s,也未能导致 TTS 大于 14dB。恢复率与其他非脉冲源的研究相似,取决于初始 TTS 的幅度。

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