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Compositional Discrimination of Decompression and Decomposition Gas Bubbles in Bycaught Seals and Dolphins

机译:副海豹和海豚减压和分解气泡的成分区分

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摘要

Gas bubbles in marine mammals entangled and drowned in gillnets have been previously described by computed tomography, gross examination and histopathology. The absence of bacteria or autolytic changes in the tissues of those animals suggested that the gas was produced peri- or post-mortem by a fast decompression, probably by quickly hauling animals entangled in the net at depth to the surface. Gas composition analysis and gas scoring are two new diagnostic tools available to distinguish gas embolisms from putrefaction gases. With this goal, these methods have been successfully applied to pathological studies of marine mammals. In this study, we characterized the flux and composition of the gas bubbles from bycaught marine mammals in anchored sink gillnets and bottom otter trawls. We compared these data with marine mammals stranded on Cape Cod, MA, USA. Fresh animals or with moderate decomposition (decomposition scores of 2 and 3) were prioritized. Results showed that bycaught animals presented with significantly higher gas scores than stranded animals. Gas composition analyses indicate that gas was formed by decompression, confirming the decompression hypothesis.
机译:先前已经通过计算机断层扫描,肉眼检查和组织病理学描述了纠缠和淹没在刺网中的海洋哺乳动物中的气泡。这些动物的组织中没有细菌或自溶变化,这表明气体是通过快速减压而在尸体周围或尸体后产生的,可能是通过快速拖曳深深缠绕在网中的动物造成的。气体成分分析和气体计分是可用于区分腐败气体和腐烂气体的两种新的诊断工具。为了这个目标,这些方法已经成功地应用于海洋哺乳动物的病理学研究。在这项研究中,我们表征了锚定水槽刺网和水獭拖网中来自混养海洋哺乳动物的气泡的通量和组成。我们将这些数据与滞留在美国马萨诸塞州科德角的海洋哺乳动物进行了比较。将新鲜的动物或具有中等分解度(分解分数为2和3)的动物作为优先对象。结果表明,与被困动物相比,被捕获动物的气体得分明显更高。气体成分分析表明,气体是通过减压形成的,从而证实了减压假设。

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