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Offshore exposure experiments on cuttlefish indicate received sound pressure and particle motion levels associated with acoustic trauma

机译:在墨鱼上进行的海上接触实验表明接收到的声压和与声损伤相关的粒子运动水平

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摘要

Recent findings on cephalopods in laboratory conditions showed that exposure to artificial noise had a direct consequence on the statocyst, sensory organs, which are responsible for their equilibrium and movements in the water column. The question remained about the contribution of the consequent near-field particle motion influence from the tank walls, to the triggering of the trauma. Offshore noise controlled exposure experiments (CEE) on common cuttlefish (Sepia officinalis), were conducted at three different depths and distances from the source and particle motion and sound pressure measurements were performed at each location. Scanning electron microscopy (SEM) revealed injuries in statocysts, which severity was quantified and found to be proportional to the distance to the transducer. These findings are the first evidence of cephalopods sensitivity to anthropogenic noise sources in their natural habitat. From the measured received power spectrum of the sweep, it was possible to determine that the animals were exposed at levels ranging from 139 to 142 dB re 1 μPa2 and from 139 to 141 dB re 1 μPa2, at 1/3 octave bands centred at 315 Hz and 400 Hz, respectively. These results could therefore be considered a coherent threshold estimation of noise levels that can trigger acoustic trauma in cephalopods.
机译:在实验室条件下对头足类动物的最新发现表明,暴露于人工噪声对静囊,感觉器官有直接影响,这些器官负责它们的平衡和在水柱中的运动。问题仍然存在,随之而来的是来自储罐壁的近场粒子运动影响对引发创伤的影响。在距离源头三个不同的深度和距离上,对普通墨鱼(Sepia officinalis)进行了离岸噪声控制的暴露实验(CEE),并在每个位置进行了粒子运动和声压测量。扫描电子显微镜(SEM)显示了囊肿中的损伤,其严重程度已量化,并发现与换能器的距离成正比。这些发现是头足类动物对其自然栖息地中人为噪声源敏感的第一个证据。根据测量的扫描功率谱,可以确定动物的暴露水平为139至142 dB re 1μPa 2 和139至141 dB re 1μPa > 2 ,分别位于以315 Hz和400 Hz为中心的1/3倍频带。因此,这些结果可以被认为是噪声水平的连贯阈值估计,可以触发头足类的听觉创伤。

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