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Interacting effects of vessel noise and shallow river depth elevate metabolic stress in Ganges river dolphins

机译:血管噪声和浅河深度提升恒河海豚代谢应力的互动效应

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In riverine 'soundscapes', complex interactions between sound, substrate type, and depth create difficulties in assessing impacts of anthropogenic noise pollution on freshwater fauna. Underwater noise from vessels can negatively affect endangered Ganges river dolphins (Platanista gangetica), which are 'almost blind' and rely entirely on high-frequency echolocation clicks to sense their environment. We conducted field-based acoustic recordings and modelling to assess acoustic responses of Platanista to underwater noise exposure from vessels in the Ganga River (India), which is now being transformed into a major waterway. Dolphins showed enhanced activity during acute noise exposure and suppressed activity during chronic exposure. Increase in ambient noise levels altered dolphin acoustic responses, strongly masked echolocation clicks, and more than doubled metabolic stress. Noise impacts were further aggravated during dry-season river depth reduction. Maintaining ecological flows, downscaling of vessel traffic, and propeller modifications to reduce cavitation noise, could help mitigate noise impacts on Ganges river dolphins.
机译:在河滨的“声道”,声音,衬底类型和深度之间的复杂相互作用在评估人为噪声污染对淡水动物的影响时造成困难。来自船只的水下噪音可能会对濒危恒河海豚(Platanista Gangetica)产生负面影响,这是“几乎失明”并完全依赖高频回声机点击以感知他们的环境。我们进行了基于现场的声学记录和建模,以评估Platanista对甘河(印度)船舶的水下噪声暴露的声响,现在正在转化为一个主要的水路。海豚在急性噪声暴露期间表现出增强的活性,并且在慢性暴露过程中抑制活性。增加环境噪声水平改变了海豚声学响应,强烈屏蔽的回声分配点击,并且代谢应力增加了一倍多。在干燥季河深度减少期间进一步加剧了噪声影响。保持生态流量,船舶交通的缩小和螺旋桨改造,以降低空化噪音,可以帮助缓解对恒河海豚的噪声影响。

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