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射水鱼捕食:姿势和形态在瞄准行为中的作用。

Prey catching in archer fish: the role of posture and morphology in aiming behavior.

作者信息

Timmermans P J A, Souren P M

机构信息

Biological Psychology, NICI, University of Nijmegen, P.O. Box 9104, 6500 HE Nijmegen, The Netherlands.

出版信息

Physiol Behav. 2004 Mar;81(1):101-10. doi: 10.1016/j.physbeh.2004.01.010.

Abstract

Archer fishes (Toxotidae) bring down aerial prey with a squirt of water from their mouth. How they aim, however, is not clear. Measurements of the angle between the squirt and the fish's body axis (the mouth angle) already yielded agreement that pointing the body plays a part in aiming, and it has been suggested that more accurate aiming would occur by means of lips and tongue. In a previous study, however, we found that the mouth angle is an individual property, with a much smaller range than reported by others. Moreover, we found that archer fishes do not possess movable lips, and that their tongue seems too short to direct the squirt. Presently, we found that the tongue cannot even reach the rostral part of the mouth cavity, that affects the squirt's direction, and that the mouth angle is an individual property remaining constant, even across a wide range of target distances. These findings suggest that aiming the body is the only way of aiming the squirt. We also found that during aiming, the body rotates around the eyeballs which remain fixed in space. The position of the eyeballs in the head (eye angle) at the moment of squirting was also found to be an individual property. However, the eye angle is less constant than the mouth angle. The systematic variance of the eye angle probably is related to the refraction effect.

摘要

射水鱼(射水鱼科)通过从口中喷出一股水流来击落空中的猎物。然而,它们是如何瞄准的尚不清楚。对水流与鱼身体轴线之间的角度(口角)的测量已经达成共识,即身体的指向在瞄准中起作用,并且有人提出通过嘴唇和舌头可以实现更精确的瞄准。然而,在之前的一项研究中,我们发现口角是个体特有的属性,其范围比其他人报道的要小得多。此外,我们发现射水鱼没有可活动的嘴唇,而且它们的舌头似乎太短,无法引导水流。目前,我们发现舌头甚至无法到达口腔的吻部,这会影响水流的方向,并且口角是个体特有的属性,即使在很宽的目标距离范围内也保持不变。这些发现表明,身体的指向是瞄准水流的唯一方式。我们还发现,在瞄准过程中,身体围绕固定在空间中的眼球旋转。喷水瞬间眼球在头部的位置(眼角)也被发现是个体特有的属性。然而,眼角的稳定性不如口角。眼角的系统变化可能与折射效应有关。

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