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Indirect evidence for elastic energy playing a role in limb recovery during toad hopping

机译:蟾蜍跳跳过程中弹性能量在肢体恢复中起作用的间接证据

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摘要

Elastic energy is critical for amplifying muscle power during the propulsive phase of anuran jumping. In this study, we use toads (Bufo marinus) to address whether elastic recoil is also involved after take-off to help flex the limbs before landing. The potential for such spring-like behaviour stems from the unusually flexed configuration of a toad's hindlimbs in a relaxed state. Manual extension of the knee beyond approximately 90° leads to the rapid development of passive tension in the limb as underlying elastic tissues become stretched. We hypothesized that during take-off, the knee regularly extends beyond this, allowing passive recoil to help drive limb flexion in mid-air. To test this, we used high-speed video and electromyography to record hindlimb kinematics and electrical activity in a hindlimb extensor (semimembranosus) and flexor (iliofibularis). We predicted that hops in which the knees extended further during take-off would require less knee flexor recruitment during recovery. Knees extended beyond 90° in over 80% of hops, and longer hops involved greater degrees of knee extension during take-off and more intense semimembranosus activity. However, knee flexion velocities during recovery were maintained despite a significant decrease in iliofibularis intensity in longer hops, results consistent with elastic recoil playing a role.
机译:弹性能量对于在无水jumping跳跃的推进阶段放大肌肉力量至关重要。在这项研究中,我们使用蟾蜍(Bufo marinus)来解决起飞后是否也有弹性后坐力,以帮助降落前弯曲四肢。出现这种类似弹簧的行为的可能性源于蟾蜍后肢在松弛状态下异常弯曲的构造。当下面的弹性组织被拉伸时,膝盖的手动伸展超过大约90°会导致肢体中被动张力的迅速发展。我们假设起飞时膝盖有规律地延伸超过此范围,从而允许被动后坐力帮助推动空中四肢屈曲。为了对此进行测试,我们使用了高速视频和肌电图记录了后肢伸肌(semimembranosus)和屈肌(iliofibularis)的后肢运动学和电活动。我们预测,在起飞期间膝盖进一步伸展的啤酒花在恢复过程中需要较少的膝盖屈肌吸收。在超过80%的跃点中,膝盖延伸超过90°,而较长的跃点在起飞过程中牵涉更大程度的膝盖伸展,并且半膜活动更为剧烈。然而,尽管较长的一跳中胫腓肌的强度明显降低,但恢复过程中仍保持膝盖屈曲速度,其结果与弹性后坐力起一定作用。

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