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首页> 外文期刊>Scientific reports. >Parallel vs. comparative evaluation of alternative options by colonies and individuals of the ant Temnothorax rugatulus
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Parallel vs. comparative evaluation of alternative options by colonies and individuals of the ant Temnothorax rugatulus

机译:平行与蚂蚁Temnothorax Rugatulus的殖民地和个体的替代选择的比较评估

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Both a single ant and the colony to which it belongs can make decisions, but the underlying mechanisms may differ. Colonies are known to be less susceptible than lone ants to “choice overload”, whereby decision quality deteriorates with increasing number of options. We probed the basis of this difference, using the model system of nest-site selection by the ant Temnothorax rugatulus . We tested the applicability of two competing models originally developed to explain information-processing mechanisms in vertebrates. The Tug of War model states that concurrent alternatives are directly compared, so that choosing between two alternatives takes longer than accepting a single one. In contrast, the Sequential Choice Model assumes that options are examined in parallel, and action takes place once any option reaches a decision criterion, so that adding more options shortens time to act. We found that single ants matched the Tug of War model while colonies fitted the Sequential Choice model. Our study shows that algorithmic models for decision-making can serve to investigate vastly different domains, from vertebrate individuals to both individuals and colonies of social insects.
机译:它都有一个蚂蚁和它所属的殖民地可以做出决定,但潜在的机制可能有所不同。已知殖民地比孤立蚂蚁更容易受到“选择过载”,从而随着越来越多的选择而劣化。我们探讨了这种差异的基础,使用蚂蚁Temnothorax rugatulus的巢穴设计模型系统。我们测试了最初开发的两个竞争模型的适用性,以解释脊椎动物中的信息处理机制。拔河模式指出并发替代方案是直接比较的,因此在两个替代方案之间选择比接受单个替代方案更长。相反,顺序选择模型假定并行检查选项,并且一旦任何选项到达判定标准,就会发生操作,从而添加更多选项缩短了动作的时间。我们发现单个蚂蚁匹配拔河,而殖民地拟合顺序选择模型。我们的研究表明,决策的算法模型可以用于从脊椎动物到社会昆虫的个人和殖民地来调查大众不同的域。

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