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首页> 外文期刊>Aquaculture Research >Evaluating the spatial range of the effect of synchronized antiparasitic treatments on the abundance of sea lice Caligus rogercresseyi (Boxshall & Bravo, 2000) in Chile
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Evaluating the spatial range of the effect of synchronized antiparasitic treatments on the abundance of sea lice Caligus rogercresseyi (Boxshall & Bravo, 2000) in Chile

机译:评估同步抗寄生虫治疗对智利海洋虱子罗格雷斯大量(BOXSHALL& BRAVO,2000)的疗效的空间范围

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摘要

Sea lice are the most important ectoparasites affecting farmed salmonids in marine water worldwide and pharmacological treatments are widely used to control their abundance. Synchronization of antiparasitic treatments among closely located salmon farms has been recently evaluated as a promising strategy for improving treatment performance. However, the optimum distance at which farms should synchronize their treatments is not clear. We used a repeated measures linear mixed effects model to evaluate the impact of two nationwide treatment synchronization procedures conducted in Chile in 2014 and 2015 on subsequent adult lice counts up to 13 weeks after the procedure. Each treatment synchronization procedure consisted of two 2-week synchronization windows, in which farms were required to treat their fish. A period of 3 weeks elapsed between the two windows. Treatment synchronization was measured as the number of neighbouring farms that treated their fish within a certain geographical threshold, each of them weighted by its distance from the farm of interest. We tested four different thresholds: 5, 10, 20 and 30 km. The results indicate that the abundance of adult lice on farms that synchronized treatments with their neighbours within a distance of 5km was lower than the abundance on non-synchronized farms from weeks 4 to 11 after the procedure. Our findings suggest the treatment synchronization effect was distance dependent and greater when neighbouring farms up to 5km joined the procedure.
机译:海虱是影响海洋水中养殖鲑鱼的最重要的异位遗传蛋白,并且药理学治疗广泛用于控制其丰富。最近被评估为改善治疗表现的有希望的策略的抗疟原虫治疗的同步。然而,农场应同步其治疗的最佳距离尚不清楚。我们使用了一项重复措施线性混合效果模型来评估2014年和2015年在智利中进行的两个全国治疗同步程序在随后的成人虱子上数最多13周后。每个治疗同步程序包括两个2周同步窗口,其中需要农场治疗他们的鱼。两个窗户之间经过了3周的时间。处理同步被测量为在某个地理阈值内处理其鱼的邻近农场的数量,它们中的每一个加重其与感兴趣的农场的距离。我们测试了四个不同的门槛:5,10,20和30公里。结果表明,在5km距离在5km的距离内与其邻居在5km内同步处理的农场的丰度低于非同步农场的丰富,在程序后的第4周至第11周。我们的研究结果表明,当邻近农场高达5km加入程序时,治疗同步效果距离差距,更大。

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