首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >The Use of the First Order System Transfer Function in the Analysis of Proboscis Extension Learning of Honey Bees, Apis mellifera L., Exposed to Pesticides
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The Use of the First Order System Transfer Function in the Analysis of Proboscis Extension Learning of Honey Bees, Apis mellifera L., Exposed to Pesticides

机译:一阶系统传递函数在蜜蜂暴露于农药的蜜蜂Apis mellifera象鼻延伸学习中的应用

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No attempts have been made to apply a mathematical model to the learning curve in honey bees exposed to pesticides. We applied a standard transfer function in the form Y = B3*exp(− B2 * (X − 1)) + B4 * (1 − exp(− B2 * (X − 1))), where X is the trial number; Y is proportion of correct responses, B2 is the learning rate, B3 is readiness to learn and B4 is ability to learn. Reanalyzing previously published data on the effect of insect growth regulators tebufenozide and diflubenzuron on the classical conditioning of proboscis extension, the model revealed additional effects not detected with standard statistical tests of significance.
机译:尚未尝试将数学模型应用于暴露于农药的蜜蜂的学习曲线。我们以Y = B3 * exp(-B2 *(X-1))+ B4 *(1- exp(-B2 *(X-1)))的形式应用标准传递函数,其中X是试验编号; Y是正确答案的比例,B2是学习率,B3是学习准备,B4是学习能力。重新分析了先前发表的有关昆虫生长调节剂tebufenozide和diflubenzuron对经典长鼻延长条件的影响的数据,该模型揭示了用显着性标准统计学检验未检测到的其他影响。

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