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Efficiency of antlion trap construction

机译:防蚁圈的建设效率

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摘要

Assessing the architectural optimality of animal constructions is in most cases extremely difficult, but is feasible for antlion larvae, which dig simple pits in sand to catch ants. Slope angle, conicity and the distance between the head and the trap bottom, known as off-centring, were measured using a precise scanning device. Complete attack sequences in the same pits were then quantified, with predation cost related to the number of behavioural items before capture. Off-centring leads to a loss of architectural efficiency that is compensated by complex attack behaviour. Off-centring happened in half of the cases and corresponded to post-construction movements. In the absence of off-centring, the trap is perfectly conical and the angle is significantly smaller than the crater angle, a physical constant of sand that defines the steepest possible slope. Antlions produce efficient traps, with slopes steep enough to guide preys to their mouths without any attack, and shallow enough to avoid the likelihood of avalanches typical of crater angles. The reasons for the paucity of simplest and most efficient traps such as theses in the animal kingdom are discussed.
机译:在大多数情况下,评估动物结构的建筑最佳性非常困难,但对于在沙中挖出简单坑捕捉蚂蚁的小蚁幼虫来说是可行的。使用精密扫描仪测量倾斜角,锥度和顶部与捕集阱底部之间的距离(偏心)。然后,对相同坑中的完整攻击序列进行量化,其捕食成本与被捕之前的行为数量有关。偏心导致架构效率的降低,并通过复杂的攻击行为来弥补。偏心发生在一半的情况下,对应于施工后的运动。在没有偏心的情况下,捕集阱完全是圆锥形的,其角度明显小于火山口角,即砂土的物理常数,定义了可能的最陡坡度。蚂蚁产生有效的陷阱,其坡度足够陡峭,足以将猎物引导到它们的嘴巴而不会受到任何攻击,而其斜度又足够大,可以避免火山口角典型的雪崩的可能性。讨论了最简单,最有效的陷阱(例如动物界中的此类陷阱)匮乏的原因。

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