首页> 外文会议>International Work Conference on Bio-inspired Intelligence >Evolution of Shannon entropy in a fish system (European seabass, Dicentrarchus labrax) during the recuperation period after exposure to methylmercury
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Evolution of Shannon entropy in a fish system (European seabass, Dicentrarchus labrax) during the recuperation period after exposure to methylmercury

机译:暴露于甲基汞后的休养期中鱼系统(欧洲鲈鱼,香鲈)香农熵的演变

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The development of non-invasive methods for fish welfare and contaminant monitoring is of high relevance for the production of high quality and safe farmed fish. We have recently shown the suitability of the Shannon entropy (SE) in a commercially relevant fish system (European seabass, Dicentrarchus labrax) to differentiate methylmercury (MeHg) treated fish from non-treated fish. The present work examines the evolution of the SE of a European seabass system during an 11 days recuperation period immediately after a 2 weeks treatment with 4 μg MeHg/L (Case C2) and compares it to that of a control group not treated with MeHg (Case 1). While the SE of the C1 increased during the recuperation period, that of C2 showed erratic responses with a very modest decreasing trend.
机译:鱼类福利和污染物监测的非侵入性方法的发展与高质量和安全养殖鱼类的生产高度相关。最近,我们显示了香农熵(SE)在与商业相关的鱼类系统(欧洲鲈鱼,鲈鱼Dicentrarchus labrax)中的适用性,以区分甲基汞(MeHg)处理的鱼与未处理的鱼。本工作研究了在用4μgMeHg / L(案例C2)治疗2周后,欧洲海鲈系统在11天的恢复期内SE的演变,并将其与未使用MeHg治疗的对照组进行了比较(情况1)。尽管C1的SE在恢复期间有所增加,但C2的SE却显示出不稳定的响应,并具有非常适度的下降趋势。

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