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地震气枪多次脉冲对宽吻海豚听力和行为的影响。

Effects of multiple impulses from a seismic air gun on bottlenose dolphin hearing and behavior.

作者信息

Finneran James J, Schlundt Carolyn E, Branstetter Brian K, Trickey Jennifer S, Bowman Victoria, Jenkins Keith

机构信息

U.S. Navy Marine Mammal Program, Space and Naval Warfare Systems Center Pacific, Code 71510, 53560 Hull Street, San Diego, California 92152.

Exelis Inc., 3276 Rosecrans Street, San Diego, California 92110.

出版信息

J Acoust Soc Am. 2015 Apr;137(4):1634-46. doi: 10.1121/1.4916591.

Abstract

To investigate the auditory effects of multiple underwater impulses, hearing thresholds were measured in three bottlenose dolphins before and after exposure to 10 impulses produced by a seismic air gun. Thresholds were measured at multiple frequencies using both psychophysical and electrophysiological (auditory evoked potential) methods. Exposures began at relatively low levels and gradually increased over a period of several months. The highest exposures featured peak sound pressure levels from 196 to 210 dB re 1 μPa, peak-peak sound pressure levels of 200-212 dB re 1 μPa, and cumulative (unweighted) sound exposure levels from 193 to 195 dB re 1 μPa(2)s. At the cessation of the study, no significant increases were observed in psychophysical thresholds; however, a small (9 dB) shift in mean auditory evoked potential thresholds, accompanied by a suppression of the evoked potential amplitude function, was seen in one subject at 8 kHz. At the highest exposure condition, two of the dolphins also exhibited behavioral reactions indicating that they were capable of anticipating and potentially mitigating the effects of impulsive sounds presented at fixed time intervals.

摘要

为了研究多次水下脉冲的听觉影响,在三头宽吻海豚暴露于地震气枪产生的10次脉冲之前和之后测量了它们的听力阈值。使用心理物理学和电生理学(听觉诱发电位)方法在多个频率上测量阈值。暴露从相对较低的水平开始,并在几个月的时间内逐渐增加。最高暴露水平的峰值声压级为196至210 dB re 1 μPa,峰峰值声压级为200 - 212 dB re 1 μPa,累积(未加权)声暴露级为193至195 dB re 1 μPa(2)s。在研究结束时,心理物理学阈值未观察到显著增加;然而,在一名受试者的8 kHz频率处,平均听觉诱发电位阈值出现了小幅度(9 dB)的变化,同时伴有诱发电位幅度功能的抑制。在最高暴露条件下,其中两头海豚还表现出行为反应,表明它们能够预测并可能减轻以固定时间间隔呈现的脉冲声音的影响。

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