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A mathematical model of the defence mechanism of a bombardier beetle

机译:庞巴迪甲虫防御机制的数学模型

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摘要

Previous studies of bombardier beetles have shown that some species have a continuous discharge while others exhibit a pulsed discharge. Here, a mathematical model of the defence mechanism of the bombardier beetle is developed and the hypothesis that almost all bombardiers' defences have some sort of cyclic behaviour at frequencies much higher than previously thought is put forward. The observation of pulses arises from secondary lower frequency cycles that appear for some parameter values. For realistic parameter values, the model can exhibit all the characteristics seen in the various species of bombardier. The possibility that all bombardiers have the same underlying defence mechanism gives weight to the theory that all bombardiers' explosive secretory mechanisms have diversified from a common ancestral mechanism.
机译:先前对庞巴迪甲虫的研究表明,某些物种具有连续放电,而另一些物种则具有脉冲放电。在此,建立了庞巴迪甲虫防御机制的数学模型,并提出了一个假设,即几乎所有庞巴迪甲虫的防御系统都有某种周期性的循环行为,其频率远高于先前的想象。对脉冲的观察来自某些参数值出现的次级低频周期。对于现实的参数值,模型可以显示出各种庞巴迪飞机中看到的所有特征。所有轰炸机具有相同的基本防御机制的可能性使所有轰炸机的爆炸性分泌机制与共同的祖先机制有所不同的理论更加重要。

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