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Path selection and foraging efficiency in Argentine ant transport networks

机译:阿根廷蚂蚁运输网络中的路径选择和觅食效率

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We experimentally investigated both individual and collective behavior of the Argentine ant Linepithema humile as they crossed symmetrical and asymmetrical bifurcations in gallery networks. Ants preferentially followed the branch that deviated the least from their current direction and their probability to perform a U-turn after a bifurcation increased with the turning angle at the bifurcation. At the collective level, colonies were better able to find the shortest path that linked the nest to a food source in a polarized network where bifurcations were symmetrical from one direction and asymmetrical from the other than in a network where all bifurcations were symmetrical. We constructed a model of individual behavior and showed that an individual’s preference for the least deviating path will be amplified via the ants’ mass recruitment mechanism thus explaining the difference found between polarized and non-polarized networks. The foraging efficiency measured in the simulations was three times higher in polarized than in non-polarized networks after only 15 min. We conclude that measures of transport network efficiency must incorporate both the structural properties of the network and the behavior of the network users.
机译:我们通过实验研究了阿根廷蚂蚁Linepithema humile在画廊网络中穿越对称和不对称分叉时的个体和集体行为。蚂蚁优先跟随偏离其当前方向最小的分支,并且随着分叉处的转向角的增加,它们在分叉后执行掉头的可能性也最大。在集体层面上,与所有分叉都是对称的网络相比,殖民地在极化网络中找到巢穴与食物来源的最短路径更好,在极化网络中,分叉从一个方向对称,而从另一个方向不对称。我们构建了一个个体行为模型,并表明个体对最小偏离路径的偏好将通过蚂蚁的大规模募集机制得到放大,从而解释了极化网络和非极化网络之间的差异。在模拟中测得的觅食效率仅在15​​分钟后就在偏光网络中是非偏光网络的三倍。我们得出的结论是,传输网络效率的度量必须兼顾网络的结构属性和网络用户的行为。

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