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Three dimensional reconstruction of energy stores for jumping in planthoppers and froghoppers from confocal laser scanning microscopy

机译:共聚焦激光扫描显微镜对飞虱跳跃的能量存储的三维重建

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摘要

Jumping in planthopper and froghopper insects is propelled by a catapult-like mechanism requiring mechanical storage of energy and its quick release to accelerate the hind legs rapidly. To understand the functional biomechanics involved in these challenging movements, the internal skeleton, tendons and muscles involved were reconstructed in 3-D from confocal scans in unprecedented detail. Energy to power jumping was generated by slow contractions of hind leg depressor muscles and then stored by bending specialised elements of the thoracic skeleton that are composites of the rubbery protein resilin sandwiched between layers of harder cuticle with air-filled tunnels reducing mass. The images showed that the lever arm of the power-producing muscle changed in magnitude during jumping, but at all joint angles would cause depression, suggesting a mechanism by which the stored energy is released. This methodological approach illuminates how miniaturized components interact and function in complex and rapid movements of small animals.>DOI:
机译:跳跃的飞虱和蛙虫是由类似弹射器的机制推动的,该机制需要机械存储能量并快速释放能量,以快速加速后腿。为了了解这些具有挑战性的运动所涉及的功能生物力学,通过共聚焦扫描以前所未有的详细信息以3D方式重建了所涉及的内部骨骼,肌腱和肌肉。力量跳跃产生的能量是由后腿下压肌肉的缓慢收缩产生的,然后通过弯曲胸部骨架的特殊元素而存储起来的,这些元素是橡胶蛋白弹性蛋白的复合材料,夹在较硬的表皮层之间,并通过充气隧道减少了质量。图像显示,在跳跃过程中,发电肌肉的杠杆臂在大小上发生了变化,但在所有关节角度处都将导致下陷,这表明了一种释放所存储能量的机制。这种方法论方法阐明了小型组件如何在小型动物的复杂快速运动中相互作用和起作用。> DOI:

著录项

  • 期刊名称 eLife
  • 作者单位
  • 年(卷),期 2017(6),-1
  • 年度 2017
  • 页码 e23824
  • 总页数 25
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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