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首页> 外文期刊>The Journal of Experimental Biology >Jumping performance of froghopper insects
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Jumping performance of froghopper insects

机译:蛙虫昆虫的跳跃性能

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The kinematics of jumping in froghopper insects were analysed from high speed sequences of images captured at rates up to 8000 s(-1). In a jump, the attitude of the body is set by the front and middle legs, and the propulsion is delivered by rapid and synchronous movements of the hind legs that are 1.5 times longer than the other legs, but are only about half the length of the body and represent just 2% of the body mass. The wings are not moved and the front and middle legs may be raised off the ground before take-off. The hind legs are first cocked by a slow levation of the trochantera about the coxae so that the femora are pressed against the ventral, indented wall of the thorax, with the femoro-tibial joints tucked between the middle legs and body. Only the tips of the hind tarsi are in contact with the ground. In this position, the hind legs stay motionless for 1-2 s. Both trochantera are then synchronously and rapidly depressed about the coxae at rotational velocities of 75500 deg. s(-1) and the tibiae extended, to launch a jump that in Philaenus reaches a height of 700 mm, or 115 body lengths.
机译:从以高达8000 s(-1)的速度捕获的图像的高速序列中分析了蛙蛙昆虫跳跃的运动学。跳跃时,身体的姿势由前腿和中腿决定,而后腿的快速同步运动则提供了推进力,后腿的运动是其他腿的1.5倍,但长度仅为后腿的一半。并仅占体重的2%。机翼不动,起飞前,前腿和中腿可能抬离地面。后腿首先被股骨粗隆围绕髋关节缓慢抬起,从而将股骨压在胸部腹侧凹壁上,股胫关节被夹在中腿和身体之间。仅后柏油石的尖端与地面接触。在此位置,后腿静止不动1-2 s。然后,以75500度的旋转速度在髋关节周围同时迅速压迫两个转子。 s(-1)和胫骨伸展开来,使费城的跳跃达到700毫米的高度,即115体长。

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