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首页> 外文期刊>Marine & freshwater research >Determining barotrauma in the Pictus catfish, Pimelodus pictus, experimentally exposed to simulated hydropower turbine passage
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Determining barotrauma in the Pictus catfish, Pimelodus pictus, experimentally exposed to simulated hydropower turbine passage

机译:在PimeLodus pictus中确定巴黎鲁姆纳,实验暴露于模拟水电涡轮机通道

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Hydropower development poses severe threats to the aquatic diversity and ecosystem services. One such threat is the exposure of fish to extreme conditions within hydropower facilities. Fish may suffer rapid decompression when passing through turbines or when entering the draft tubes, which can lead to barotrauma and mortality. We aimed to evaluate the effects of rapid decompression on the Amazonian benthic species Pimelodus pictus (Pictus catfish), by simulating in hypo-hyperbaric chambers. The most frequent injuries in Pictus catfish exposed to simulated rapid decompression were swim-bladder rupture, intestine rupture, internal haemorrhage and embolism. The occurrence and magnitude of internal haemorrhaging and emboli were related to the ratio of pressure change and the decompression timespan, whereas swim-bladder rupture occurred even at relatively low ratios. Emboli was present almost entirely among fish with a ruptured swim bladder. Importantly, all fish were negatively buoyant before exposure to decompression, posing challenges to data analysis. Therefore, barotrauma studies with benthic fish species are deemed to be challenging and are likely to require the use of complementary approaches. Research is needed to understand the state of buoyancy of benthic fish in the wild and to develop methods to accurately replicate these in a controlled testing environment.
机译:水电开发对水生多样性和生态系统服务构成严重威胁。一种这样的威胁是将鱼暴露在水电设施中的极端条件。通过涡轮机或进入牵引管时,鱼可能会遭受快速减压,这可以导致巴罗拉姆和死亡率。我们旨在通过在Hypo-Hyper-高压室中模拟来评估快速减压对亚马逊底栖物种PimeLodus Pimelodus Pictus(Pictus Catfish)的影响。 Pictus鲶鱼暴露于模拟快速减压的最常见的伤害是游泳膀胱破裂,肠破裂,内出血和栓塞。内出血和栓子的发生和幅度与压力变化和减压次数的比率有关,而甚至在比较低的比率下也发生了游泳囊破裂。胚胎几乎完全在鱼类中几乎完全存在,其中游泳膀胱破裂。重要的是,在暴露于减压之前,所有鱼类都具有负致力,对数据分析构成挑战。因此,与底栖鱼类的巴罗拉姆研究被认为是具有挑战性的,并且可能需要使用互补方法。需要研究来了解野生鱼类中底栖鱼的浮力状态,并在受控测试环境中能够准确地复制这些方法。

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