首页> 外文期刊>The Journal of Experimental Biology >THE MOTOR PROGRAM FOR DEFENSIVE KICKING IN CRICKETS - PERFORMANCE AND NEURAL CONTROL
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THE MOTOR PROGRAM FOR DEFENSIVE KICKING IN CRICKETS - PERFORMANCE AND NEURAL CONTROL

机译:板球防御性运动的电机程序-性能和神经控制

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摘要

Crickets can repulse sources of mechanical touch to their wings, legs or to the posterior body by kicking backwards ipsilaterally with one hindleg, The main component of a kick is the rapid extension of the femoro-tibial (knee) joint. A kick as a defence against predators must occur instantly after the moment of touch, The cricket kick is completed within 60-100 ms, whereas in locusts 500-2000 ms elapses between the stimulus and the end of the kick. The rapid movement of the cricket hindleg was recorded with a high-resolution video technique. Cricket kicking is based on a dynamic co-contraction of the extensor and flexor tibiae muscles during the pre-kick knee flexion period, thus differing from the static co-contraction period seen in locusts. Biomechanically, the knee joint is specialized for kicking and jumping by the specific leverage of tendons inserting at the knee, by a femoral ridge that modifies the angle of attack for flexor muscular forces and by a cushion-like swelling on the flexor tibiae tendon, Because of these structural specialisations for rapid kicking, the neural control of the motor pattern of the muscles participating in the tibial movement can vary considerably, but still produce efficient kicks, Kicking is also an element of other complex behaviours. [References: 19]
机译:可以通过用一条后腿向后同侧向后踢来排斥其翅膀,腿或后身的机械接触源。踢的主要组成部分是股胫关节(膝关节)的快速伸展。在抵挡瞬间后,必须立即踢出一道脚来防御天敌。kick踢在60-100毫秒内完成,而蝗虫在刺激和踢完之间要经过500-2000毫秒。 a后腿的快速运动是用高分辨率视频技术记录的。踢基于踢前膝屈伸期间伸肌和胫骨屈肌的动态共收缩,因此不同于蝗虫中的静态共收缩期。在生物力学上,膝关节专门用于踢和跳,具体方法是通过插入膝盖的肌腱的特殊杠杆作用,通过改变股指ridge肌屈肌力的股骨脊以及在屈肌胫骨肌腱上形成像垫一样的肿胀,在这些用于快速踢腿的结构专业中,参与胫骨运动的肌肉的运动模式的神经控制可以有很大的不同,但仍然可以产生有效的踢腿。踢腿也是其他复杂行为的要素。 [参考:19]

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