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捕猎的射水鱼会根据与未来捕食点的距离来匹配它们的起飞速度。

Hunting archer fish match their take-off speed to distance from the future point of catch.

作者信息

Wöhl Saskia, Schuster Stefan

机构信息

Universität Erlangen-Nürnberg, Institut für Zoologie II, Staudtstrasse 5, 91058 Erlangen, Germany.

出版信息

J Exp Biol. 2006 Jan;209(Pt 1):141-51. doi: 10.1242/jeb.01981.

Abstract

Archer fish can shoot down insect prey with a sharp jet of water. Fish usually fire from positions that are not directly below their target so that a dislodged insect falls ballistically with a horizontal velocity component. Only 100 ms after the insect is on its path both the shooter and other school members can initiate a rapid turn and then head straight in the direction of the later point of impact of their falling prey. The quick turn and subsequent take-off are performed ;open-loop', based on the initial values of the falling insect's motion. We report here that archer fish can not only take off in the direction of the later point of impact but also predict its distance. Distance information allows the fish to adjust their take-off speed so that they would arrive within a narrow time slot slightly (about 50 ms) after their prey's impact, despite large differences in the size of the aligning turn and in the distance to be covered. Selecting a constant speed program with matched speed and catching the insect on the move minimizes frictional losses. The initial speed of starting fish is slightly but systematically too slow and is increased later so that the fish arrive 20 ms earlier than expected and often make the catch on a higher than take-off speed. The variability of later speed changes suggests a systematic ;error' in the take-off, as if the fish underestimated distance. However, this apparent deficiency seems well adapted to the fish catching their prey at a high speed: if later the fish had no possibility to correct an initial error then it is better to start slightly too slow in order to minimize the risk of overshooting the point of catch.

摘要

射水鱼可以用一股强劲的水流击落昆虫猎物。鱼通常从不在其目标正下方的位置喷水,这样被击落的昆虫会以水平速度分量做抛物线运动下落。在昆虫开始下落仅100毫秒后,射手鱼和鱼群中的其他成员就能迅速转向,然后径直朝着它们下落猎物的后续撞击点方向游去。快速转向和随后的起飞是基于下落昆虫运动的初始值“开环”进行的。我们在此报告,射水鱼不仅能朝着后续撞击点的方向起飞,还能预测其距离。距离信息使鱼能够调整它们的起飞速度,以便在猎物撞击后稍晚一点(约50毫秒)的狭窄时间窗口内到达,尽管转向角度和游动距离存在很大差异。选择一个速度匹配的恒定速度程序并在昆虫移动时捕获它,可将摩擦损失降至最低。开始游动的鱼的初始速度略慢但有系统性,随后会加快,这样鱼到达的时间比预期早20毫秒,并且通常以高于起飞时的速度捕获猎物。后期速度变化的可变性表明起飞时存在系统性“误差”,就好像鱼低估了距离。然而,这种明显的不足似乎很适合鱼高速捕获猎物:如果鱼后来没有机会纠正初始误差,那么最好开始时略慢一些,以尽量减少错过捕获点的风险。

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