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One shot, one kill: the forces delivered by archer fish shots to distant targets

机译:一枪一杀:弓箭手鱼枪向远方目标传递的力量

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Archer fishes are skillful hunters of terrestrial prey, firing jets of water that dislodge insects perched on overhead vegetation. In the current investigation, we sought an answer to the question: are distant targets impractical foraging choices? Targets far from the shooter might not be hit with sufficient force to cause them to fall. However, observations from other investigators show that archer fish fire streams of water that travel in a non-ballistic fashion, which is thought to keep on-target forces high, even to targets that are several body lengths distant from the fish. We presented targets at different distances and investigated three aspects of foraging behavior: (i) on-target forces, (ii) shot velocity, (iii) a two-target choice assay to determine if fish would show any preference for downing closer targets or more distant targets. In general, shots from our fish (Toxotes chatareus) showed a mild decrease (less than 15% on average) in on-target forces at our most distant target offered (5.8 body lengths) with respect to the closest target offered (2.3 body lengths). One individual in our investigation showed slightly, but significantly, greater on-target forces as target distance increased. Forces on the furthest targets offered were found to double that of attachment forces for 200 mg insects, even for individuals whose on-target forces showed mild decreases with increases in target distance. High-speed video analysis of jet impact with the target revealed that the shot was traveling in a non-ballistic manner, even to our most distant target offered, corroborating previous suppositions that on-target forces should remain high. Fish were able to accomplish this without large changes to shot velocity, but we did find evidence that the water jets appeared to differ in the timing of their acceleration as target distance increased. Our two-target choice experiment revealed that fish show preference for downing the closer target first, even though impact forces on distant targets only showed mild decreases. Our overall findings (and the findings of others) suggest that archer fish modulate many aspects of their shooting behavior: from target selection to active control over the water jet that allows the fish to deliver reliably forceful impacts to prey over a wide range of distances. (C) 2015 Elsevier GmbH. All rights reserved.
机译:弓箭手鱼是熟练的陆地猎物,会射出水射流,驱赶栖息在头顶植被上的昆虫。在当前的调查中,我们寻求以下问题的答案:远距离目标不切实际的觅食选择吗?远离射手的目标可能不会受到足够的力击中而掉落。但是,其他研究人员的观察结果表明,弓箭手鱼射出的水流以非弹道方式行进,据认为可以保持较高的目标力量,甚至可以使目标距离鱼体长几米。我们介绍了不同距离的目标,并调查了觅食行为的三个方面:(i)目标力,(ii)射速,(iii)两目标选择测定法,以确定鱼是否倾向于降低近距离目标或更远的目标。一般而言,从我们的鱼类(Toxotes chatareus)拍摄的照片显示,与我们提供的最接近的目标(2.3体长)相比,我们提供的最远目标(5.8体长)的目标作用力略有下降(平均不到15%) )。我们调查中的一个人显示,随着目标距离的增加,目标上的力略有增加,但显着增加。发现对200毫克昆虫提供的最远距离目标上的作用力,其附着力是其两倍,即使对于那些目标上作用力随目标距离增加而略有降低的个体也是如此。高速视频分析了射流对目标的撞击,显示出射击是以非弹道方式进行的,甚至到达了我们提供的最远距离的目标,这证实了先前的假设,即目标力应保持较高。鱼能够在不大幅度改变射速的情况下完成这项任务,但是我们确实发现有证据表明,随着目标距离的增加,水射流的加速时间似乎有所不同。我们的两目标选择实验表明,即使对远距离目标的冲击力仅显示出轻微的下降,鱼类仍倾向于先降低近距离目标。我们的总体发现(以及其他发现)表明,射手鱼可调节其射击行为的许多方面:从目标选择到对水射流的主动控制,这使鱼能够在很宽的距离范围内可靠地向猛烈的猎物传递猎物。 (C)2015 Elsevier GmbH。版权所有。

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