首页> 美国卫生研究院文献>PLoS Clinical Trials >The Curious Acoustic Behavior of Estuarine Snapping Shrimp: Temporal Patterns of Snapping Shrimp Sound in Sub-Tidal Oyster Reef Habitat
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The Curious Acoustic Behavior of Estuarine Snapping Shrimp: Temporal Patterns of Snapping Shrimp Sound in Sub-Tidal Oyster Reef Habitat

机译:河口Sn虾的好奇声学行为:潮下牡蛎礁栖息地Sn虾声音的时间模式

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摘要

Ocean soundscapes convey important sensory information to marine life. Like many mid-to-low latitude coastal areas worldwide, the high-frequency (>1.5 kHz) soundscape of oyster reef habitat within the West Bay Marine Reserve (36°N, 76°W) is dominated by the impulsive, short-duration signals generated by snapping shrimp. Between June 2011 and July 2012, a single hydrophone deployed within West Bay was programmed to record 60 or 30 seconds of acoustic data every 15 or 30 minutes. Envelope correlation and amplitude information were then used to count shrimp snaps within these recordings. The observed snap rates vary from 1500–2000 snaps per minute during summer to <100 snaps per minute during winter. Sound pressure levels are positively correlated with snap rate (r = 0.71–0.92) and vary seasonally by ~15 decibels in the 1.5–20 kHz range. Snap rates are positively correlated with water temperatures (r = 0.81–0.93), as well as potentially influenced by climate-driven changes in water quality. Light availability modulates snap rate on diurnal time scales, with most days exhibiting a significant preference for either nighttime or daytime snapping, and many showing additional crepuscular increases. During mid-summer, the number of snaps occurring at night is 5–10% more than predicted by a random model; however, this pattern is reversed between August and April, with an excess of up to 25% more snaps recorded during the day in the mid-winter. Diurnal variability in sound pressure levels is largest in the mid-winter, when the overall rate of snapping is at its lowest, and the percentage difference between daytime and nighttime activity is at its highest. This work highlights our lack of knowledge regarding the ecology and acoustic behavior of one of the most dominant soniforous invertebrate species in coastal systems. It also underscores the necessity of long-duration, high-temporal-resolution sampling in efforts to understand the bioacoustics of animal behaviors and associated changes within the marine soundscape.
机译:海洋声景向海洋生物传达了重要的感官信息。像世界上许多中低纬度沿海地区一样,西湾海洋保护区(36°N,76°W)内牡蛎礁栖息地的高频(> 1.5 kHz)音景以脉冲,短时为主捕虾产生的信号。在2011年6月至2012年7月之间,对在西湾部署的单个水听器进行了编程,每15或30分钟记录60或30秒的声学数据。然后使用包络相关性和幅度信息对这些记录中的虾按声进行计数。观察到的快照速率从夏季的每分钟1500-2000快照到冬季的每分钟<100快照不等。声压级与捕捉率呈正相关(r = 0.71-0.92),并且在1.5-20 kHz范围内,季节性变化约为15分贝。捕捉率与水温成正相关(r = 0.81-0.93),并可能受到气候驱动的水质变化的影响。光照的可用性在昼夜时间尺度上调节捕捉率,大多数日子都表现出对夜间或白天捕捉的显着偏爱,并且许多显示出额外的日光增加。在仲夏,夜间发生的s啪声比随机模型预测的快5-10%。但是,这种模式在8月和4月之间发生了逆转,冬季中旬白天记录的快照增加了多达25%。声压级的昼夜变化最大,是整个冬季,当总的抽搐率最低时,白天和夜间活动之间的百分比差异最大。这项工作突显了我们对沿海系统中最主要的无脊椎动物无脊椎动物之一的生态和声学行为缺乏了解。它还强调了进行长时间,高时间分辨率采样的必要性,以便了解动物行为的生物声学以及海洋声景内的相关变化。

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