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Optimal length distribution of termite tunnel branches for efficient food search and resource transportation

机译:白蚁隧道分支的最佳长度分布,以实现有效的食物搜索和资源运输

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Subterranean termites excavate branching tunnels for searching and transporting food in soil. Experimentally, the length distribution of the branch tunnels, P(L), was characterized by the exponentially decaying function, P(L) exp(?αL) with a branch length exponent of α = 0.15. To evaluate the significance of this α value, we used a lattice model to simulate tunnels of the Formosan subterranean termite, Coptotermes formosanus Shiraki in featureless soil and computed the ratio of energy gain for obtained food to loss for transporting food for a given time, γ for various simulated tunnel patterns with the different values of α. In simulation, the γ was maximized at 0.15 < α < 0.20 for the number of primary tunnels N = 6, 8, and 10. Our results indicate that tunnels with branch length distributions similar to those derived from empirical tunnel patterns result in tunnels made up of highly efficient paths to search and transport resources.
机译:地下白蚁开挖分支隧道,以寻找和运输土壤中的食物。实验上,分支隧道的长度分布P(L)用指数衰减函数P(L)exp(ΔαL)表征,分支长度指数为α= 0.15。为了评估该α值的重要性,我们使用了一个格模型来模拟无特征土壤中的台湾白蚁,白蚁Coptotermes formosanus Shiraki的隧道,并计算了给定时间内在运输食物时获得的食物能量损失与损失的能量之比γ对于具有不同α值的各种模拟隧道模式。在仿真中,对于主隧道N = 6、8和10,γ的最大值在0.15 <α<0.20处。我们的结果表明,分支长度分布与从经验隧道模式得出的相似的隧道长度导致了隧道的组成。搜索和运输资源的高效途径。

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