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Time-optimized path choice in the termite-hunting ant Megaponera analis

机译:白蚁狩猎蚂蚁Megaponera分析中的时间优化路径选择

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Trail network systems among ants have received a lot of scientific attention because of their various applications in problem solving of networks. Recent studies have shown that ants select the fastest available path when facing different velocities on different substrates, rather than the shortest distance. The progress of decision making by these ants is determined by pheromone-based maintenance of paths, which is a collective decision. However, path optimization through individual decision making remains mostly unexplored. Here, we present the first study of time-optimized path selection via individual decision making by scout ants. Megaponera analis scouts search for termite-foraging sites and lead highly organized raid columns to them. The path of the scout determines the path of the column. Through installation of artificial roads around M. analis nests, we were able to influence the pathway choice of the raids. After road installation, 59% of all recorded raids took place completely or partly on the road, instead of the direct, i.e. distance-optimized, path through grass from the nest to the termites. The raid velocity on the road was more than double that on the grass, and the detour thus saved 34.77 +/- 23.01% of the travel time compared with a hypothetical direct path. The pathway choice of the ants was similar to a mathematical model of least time, allowing us to hypothesize the underlying mechanisms regulating the behavior. Our results highlight the importance of individual decision making in the foraging behavior of ants and show a new procedure of pathway optimization.
机译:由于它们在网络问题解决方面的各种应用,蚂蚁中的TRAIL网络系统已经获得了很多科学的关注。最近的研究表明,当面对不同基板上的不同速度时,蚂蚁选择最快的可用路径,而不是最短的距离。这些蚂蚁决策的进展由信息素的基于信息素的维护决定,这是一个集体决策。但是,通过个别决策的路径优化仍然是未开发的。在这里,我们介绍了通过Scout Ants的单个决策制定的时间优化路径选择的第一次研究。 Megaponera analis侦察员搜索白蚁觅食站点,并对他们提供高度有组织的RAID列。侦察侦探的路径确定列的路径。通过在M. Analis Nests周围安装人工道路,我们能够影响突袭的路径选择。在道路安装之后,59%的所有记录的突袭都完全或部分地在道路上进行,而不是直接,即远程优化,从巢穴到白蚁的草地。道路上的RAID速度比在草地上的双倍分为两倍,因此与假设的直接路径相比,绕行的行程时间保存了34.77 +/- 23.01%。蚂蚁的途径选择与最少的数学模型类似,允许我们假设规范行为的潜在机制。我们的结果突出了个别决策在蚂蚁的觅食行为中的重要性,并显示了途径优化的新程序。

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