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Prediction of insect mortality in cooled stored grain

机译:冷却储存晶粒中昆虫死亡率的预测

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Grain aeration with ambient air is the primary method used in France to prevent and control insect infestations. French grain storage operators consider that complete total mortality of insects can be achieved by maintaining grain temperature at 5?°C for 3 months. A predictive model on insect survival at low temperature was developed, using data from literature to test this hypothesis onSitophilus oryzae,Sitophilus granarius,Rhyzopertha dominica,Cryptolestes ferrugineus,Oryzaephilus surinamensis,Tribolium castaneumandTribolium confusum. A Cox proportional hazard regression, belonging to survival analysis, was associated to a Receiver Operator Analysis to evaluate the model and to predict durations of cold exposure required to obtain a total mortality for each species at different developmental stages and temperatures. The model described well the data since occurrence or not of a total mortality was correctly described in 77.2% of all cases. Computed predictions highlighted the facts that species cold-tolerance ranking varied depending on the temperature levels and that difference of cold tolerance between adult and immature stages depended greatly on species. A temperature of 0?°C is sufficient to kill all insect populations within 3 months, exceptCryptolestes ferrugineusones. However, a temperature of 5?°C is highly insufficient to achieve a total mortality. Practical implementations of this work are discussed.
机译:环境空气的谷物曝气是法国使用的主要方法,以预防和控制昆虫侵扰。法国谷物储存运营商认为,通过将粒度温度维持在5℃下3个月,可以实现昆虫的完整总死亡率。利用文献中的数据进行了昆虫存活的预测模型,使用文献中的数据来测试这一假设Onsiezile,菲律宾植物,Rhyzopertha多米尼加,Cryptolestes Ferrugineus,Oryzaephilus urinamensis,Tryzaephilus Surinamensis,Cryolium Castandumandtribolium unumusum。属于存活分析的Cox比例危险回归与接收器操作员分析相关,以评估模型并预测在不同发育阶段和温度下获得每种物种的总死亡率所需的冷暴露所需的持续时间。该模型描述了数据,因为在所有病例的77.2%中正确描述了总死亡率的情况。计算的预测突出了物种冷耐耐寒排名的事实,这取决于温度水平,成人与未成熟阶段之间的耐寒耐药差异依赖于物种。 0≤°C的温度足以在3个月内杀死所有昆虫种群,除了铁筋铁丁烯。然而,温度为5?°C是达到总死亡率的高度不足。讨论了这项工作的实际实施。

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