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首页> 外文期刊>The Journal of Experimental Biology >A mechanical approach to understanding the impact of the nematode Anguillicoloides crassus on the European eel swimbladder
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A mechanical approach to understanding the impact of the nematode Anguillicoloides crassus on the European eel swimbladder

机译:一种理解线虫血管基石罗斯斯对欧洲鳗鱼泳扫掠的影响的机械方法

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One of the most detrimental factors in the drastic decline of the critically endangered European eel (Anguilla anguilla) was the inadvertent introduction of the invasive nematode Anguillicoloides crassus. Infection primarily affects the swimbladder, a gas-filled organ that enables the eel to control its depth in the water. A reduction in swimbladder function may be fatal for eel undergoing their spawning migration to the Sargasso Sea, a journey of over 5000 km. Although the physiological damage caused by this invasive parasite is well studied through the use of quantifiable gross pathological indices, providing a good measure of the swimbladder health status, they cannot separate the role of mechanical and morphological damage. Our study examined the appropriateness of three commonly used indices as a measure of mechanical damage by performing uniaxial tensile tests on swimbladder specimens obtained from an infected eel population. When the test results were compared with the gross pathological indices it was found that thickness correlated most strongly with mechanical damage, both confirming and, more importantly, explaining the counterintuitive findings of earlier work. In a damaged swimbladder, the immune response leads to a trade-off; increasing wall thickness raises the pressure required for organ rupture but decreases strength. The results indicate that for moderate infection the mechanical integrity of the swimbladder can be maintained. For severe infection, however, a reduction in mechanical integrity may reach a tipping point, thereby affecting the successful completion of their oceanic migration.
机译:危险欧洲鳗鱼(Anguilla Anguilla)急剧下降中最有害的因素之一是侵入性线虫血管电解的意外引入。感染主要影响泳道,是一个充满燃气器官,使鳗鱼能够控制水中的深度。扫描功能的减少可能是鳗鱼正在进行其产卵迁移到Sargasso海的致命,这是超过5000公里的旅程。虽然通过使用可量化的总病理指数进行了通过这种侵入性寄生虫引起的生理损害,但提供了良好的扫描健康状况的衡量标准,但它们不能分开机械和形态损伤的作用。我们的研究通过对从感染的鳗鱼群获得的扫描剂标本进行单轴拉伸试验进行了三种常用指数的适当性。当测试结果与总理索引进行比较时,发现厚度与机械损坏最强烈相关,两者都是确认的,更重要的是,解释了早期工作的逆行结果。在受损的泳织机中,免疫应答导致权衡;增加壁厚提高器官破裂所需的压力,但降低强度。结果表明,对于中度感染,可以保持泳织机的机械完整性。然而,对于严重的感染,机械完整性的降低可能达到倾斜点,从而影响其海洋迁移的成功完成。

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