Kastelein Ronald A, Hoek Lean, Gransier Robin, Rambags Martijn, Claeys Naomi
Sea Mammal Research Company, Julianalaan 46, 3843 CC Harderwijk, The Netherlands.
J Acoust Soc Am. 2014 Jul;136(1):412-22. doi: 10.1121/1.4883596.
Safety criteria for underwater low-frequency active sonar sounds produced during naval exercises are needed to protect harbor porpoise hearing. As a first step toward defining criteria, a porpoise was exposed to sequences consisting of series of 1-s, 1-2 kHz sonar down-sweeps without harmonics (as fatiguing noise) at various combinations of average received sound pressure levels (SPLs; 144-179 dB re 1 μPa), exposure durations (1.9-240 min), and duty cycles (5%-100%). Hearing thresholds were determined for a narrow-band frequency-swept sine wave centered at 1.5 kHz before exposure to the fatiguing noise, and at 1-4, 4-8, 8-12, 48, 96, 144, and 1400 min after exposure, to quantify temporary threshold shifts (TTSs) and recovery of hearing. Results show that the inter-pulse interval of the fatiguing noise is an important parameter in determining the magnitude of noise-induced TTS. For the reported range of exposure combinations (duration and SPL), the energy of the exposure (i.e., cumulative sound exposure level; SELcum) can be used to predict the induced TTS, if the inter-pulse interval is known. Exposures with equal SELcum but with different inter-pulse intervals do not result in the same induced TTS.
为保护港湾鼠海豚的听力,需要制定海军演习期间产生的水下低频有源声纳声音的安全标准。作为确定标准的第一步,将一只鼠海豚暴露于由一系列1秒、1-2千赫兹无谐波的声纳下扫频(作为疲劳噪声)组成的序列中,这些序列具有不同的平均接收声压级(声压级;相对于1微帕为144-179分贝)、暴露持续时间(1.9-240分钟)和占空比(5%-100%)的组合。在暴露于疲劳噪声之前,以及在暴露后1-4、4-8、8-12、48、96、144和1400分钟时,测定以1.5千赫兹为中心的窄带扫频正弦波的听力阈值,以量化暂时阈移(TTS)和听力恢复情况。结果表明,疲劳噪声的脉冲间隔是确定噪声诱发TTS大小的一个重要参数。对于所报告的暴露组合范围(持续时间和声压级),如果已知脉冲间隔,则暴露能量(即累积声暴露级;SELcum)可用于预测诱发的TTS。具有相同SELcum但脉冲间隔不同的暴露不会导致相同的诱发TTS。