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首页> 外文期刊>PLoS Computational Biology >Better tired than lost: Turtle ant trail networks favor coherence over short edges
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Better tired than lost: Turtle ant trail networks favor coherence over short edges

机译:比迷失更疲倦:龟蚂蚁跟踪网络有利于短边的一致性

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Creating a routing backbone is a fundamental problem in both biology and engineering. The routing backbone of the trail networks of arboreal turtle ants (Cephalotes goniodontus) connects many nests and food sources using trail pheromone deposited by ants as they walk. Unlike species that forage on the ground, the trail networks of arboreal ants are constrained by the vegetation. We examined what objectives the trail networks meet by comparing the observed ant trail networks with networks of random, hypothetical trail networks in the same surrounding vegetation and with trails optimized for four minimizing path length, minimizing average edge length, minimizing number of nodes, and minimizing opportunities to get lost. The ants’ trails minimized path length by minimizing the number of nodes traversed rather than choosing short edges. In addition, the ants’ trails reduced the opportunity for ants to get lost at each node, favoring nodes with 3D configurations most likely to be reinforced by pheromone. Thus, rather than finding the shortest edges, turtle ant trail networks take advantage of natural variation in the environment to favor coherence, keeping the ants together on the trails.
机译:创建路由骨干是生物学和工程中的一个基本问题。树栖龟蚂蚁的路线骨干网(Cephalotes Goniodontus)使用蚂蚁沉积的甲巢和食物来源,他们走路。与地面上的物种不同,树栖蚂蚁的跟踪网络受到植被的约束。我们通过将观察到的蚂蚁跟踪网络与随机的蚂蚁跟踪网络与相同的植被网络的网络进行比较来检查跟踪网络的目标,并使用针对四个最小化的路径长度,最小化节点数量,最小化节点数量,最小化节点数量,最小化节点数量,最小化节点数量,最小化节点数量,以及最小化节点数量,并最小化机会迷路。通过最小化遍历而不是选择短边的节点的数量来最小化路径长度最小化路径长度。此外,蚂蚁的小径还减少了蚂蚁在每个节点上丢失的机会,最有可能通过信息素加强3D配置的节点。因此,而不是找到最短的边缘,龟蚂蚁跟踪网络利用环境中的自然变化来倾向于相干,将蚂蚁保持在小径上。

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