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首页> 外文期刊>The Journal of Experimental Biology >Dynamics of geckos running vertically
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Dynamics of geckos running vertically

机译:壁虎垂直运行的动力学

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Geckos with adhesive toe pads rapidly climb even smooth vertical surfaces. We challenged geckos (Hemidactylus garnotii) to climb up a smooth vertical track that contained a force platform. Geckos climbed vertically at up to 77 cm s(-1) with a stride frequency of 15 Hz using a trotting gait. During each step, whole body fore-aft, lateral and normal forces all decreased to zero when the animal attached or detached its toe pads. Peak fore-aft force was twice body weight at mid-step. Geckos climbed at a constant average velocity without generating decelerating forces on their center of mass in the direction of motion. Although mass-specific mechanical power to climb was ten times the value expected for level running, the total mechanical energy of climbing was only 5-11% greater than the potential energy change. Fore- and hindlegs both pulled toward the midline, possibly loading the attachment mechanisms. Attachment and detachment of feet occupied 13% and 37% of stance time, respectively. As climbing speed increased, the absolute time required to attach and detach did not decrease, suggesting that the period of fore-aft force production might be constrained. During ascent, the forelegs pulled toward, while hindlegs pushed away from the vertical surface, generating a net pitching moment toward the surface to counterbalance pitch-back away from the surface. Differential leg function appears essential for effective vertical as well as horizontal locomotion.
机译:带有脚趾垫的壁虎可以迅速爬上光滑的垂直表面。我们挑战壁虎(Hemidactylus garnotii)爬上一个平滑的垂直轨道,其中包含一个力平台。壁虎使用小跑步态以15 Hz的步频垂直爬升至77 cm s(-1)。在每个步骤中,当动物附着或分离脚趾垫时,全身的前后,横向和法向力都减小为零。高峰前后力是体重的两倍。壁虎以恒定的平均速度爬升,而没有在质心沿运动方向产生减速力。尽管特定于质量的爬升机械动力是水平行驶预期值的十倍,但爬升的总机械能仅比势能变化大5-11%。前腿和后腿都拉向中线,可能会加载附件机构。脚的附着和分离分别占站立时间的13%和37%。随着爬升速度的增加,连接和分离所需的绝对时间并未减少,这表明前约束力产生的时间可能会受到限制。在上升过程中,前肢向后拉,而后腿则从垂直表面推开,从而向表面产生净俯仰力矩,以抵消远离表面的俯仰。腿部微分功能对于有效的垂直和水平运动显得至关重要。

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