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Beyond contact-based transmission networks: the role of spatial coincidence

机译:超越基于接触的传输网络:空间巧合的作用

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摘要

Animal societies rely on interactions between group members to effectively communicate and coordinate their actions. To date, the transmission properties of interaction networks formed by direct physical contacts have been extensively studied for many animal societies and in all cases found to inhibit spreading. Such direct interactions do not, however, represent the only viable pathways. When spreading agents can persist in the environment, indirect transmission via ‘same-place, different-time’ spatial coincidences becomes possible. Previous studies have neglected these indirect pathways and their role in transmission. Here, we use rock ant colonies, a model social species whose flat nest geometry, coupled with individually tagged workers, allowed us to build temporally and spatially explicit interaction networks in which edges represent either direct physical contacts or indirect spatial coincidences. We show how the addition of indirect pathways allows the network to enhance or inhibit the spreading of different types of agent. This dual-functionality arises from an interplay between the interaction-strength distribution generated by the ants' movement and environmental decay characteristics of the spreading agent. These findings offer a general mechanism for understanding how interaction patterns might be tuned in animal societies to control the simultaneous transmission of harmful and beneficial agents.
机译:动物社会依靠团体成员之间的互动来有效地交流和协调其行为。迄今为止,已经对许多动物社会广泛研究了由直接物理接触形成的相互作用网络的传输特性,并且在所有情况下都发现它们抑制了传播。但是,这种直接相互作用并不代表唯一可行的途径。当传播媒介能够持续存在于环境中时,通过“同一地点,不同时间”的空间巧合间接传播成为可能。先前的研究忽略了这些间接途径及其在传播中的作用。在这里,我们使用岩石蚁群,一种模型社会物种,其平坦的巢状几何形状加上单独标记的工人,使我们能够建立时空明确的交互网络,其中边缘代表直接的物理接触或间接的空间巧合。我们展示了间接途径的添加如何使网络增强或抑制不同类型药物的扩散。这种双重功能源于由蚂蚁运动产生的相互作用强度分布与铺展剂的环境衰减特性之间的相互作用。这些发现为了解动物社会中如何调节相互作用模式以控制有害和有益物质的同时传播提供了一种通用机制。

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