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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Positive force feedback in bouncing gaits?
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Positive force feedback in bouncing gaits?

机译:步态弹跳有力反馈?

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摘要

During bouncing gaits (running, hopping, trotting), passive compliant structures (e.g. tendons, ligaments) store and release part of the stride energy. Here, active muscles must provide the required force to withstand the developing tendon strain and to compensate for the inevitable energy losses. This requires an appropriate control of muscle activation. In this study, for hopping, the potential involvement of afferent information from muscle receptors (muscle spindles, Golgi tendon organs) is investigated using a two-segment leg model with one extensor muscle. It is found that: (i) positive feedbacks of muscle-fibre length and muscle force can result in periodic bouncing; (ii) positive force feedback (F+) stabilizes bouncing patterns within a large range of stride energies (maximum hopping height of 16.3 cm, almost twofold higher than the length feedback); and (iii) when employing this reflex scheme, for moderate hopping heights (up to 8.8 cm), an overall elastic leg behaviour is predicted (hopping frequency of 1.4-3 Hz, leg stiffness of 9-27 kN m(-1)). Furthermore, F+ could stabilize running. It is suggested that, during the stance phase of bouncing tasks, the reflex-generated motor control based on feedbacks might be an efficient and reliable alternative to central motor commands. [References: 53]
机译:在步态弹跳(奔跑,跳跃,小跑)期间,被动顺应性结构(例如肌腱,韧带)会存储并释放部分步幅能量。在这里,活跃的肌肉必须提供所需的力量,以承受不断发展的肌腱张力并补偿不可避免的能量损失。这需要适当控制肌肉的激活。在这项研究中,对于跳跃,使用具有一个伸直肌的两段腿模型研究了来自肌肉受体(肌肉纺锤,高尔基体腱器官)的传入信息的潜在参与。发现:(i)肌肉纤维长度和肌肉力量的积极反馈会导致周期性的反弹; (ii)正向力反馈(F +)将跳动模式稳定在较大的步幅能量范围内(最大跳跃高度为16.3厘米,几乎是长度反馈的两倍); (iii)采用此反射方案时,对于中等跳跃高度(最大8.8厘米),可以预测腿的总体弹性行为(跳跃频率为1.4-3 Hz,腿部僵硬度为9-27 kN m(-1)) 。此外,F +可以稳定运行。建议在弹跳任务的站立阶段,基于反馈的反射生成的电机控制可能是中央电机命令的一种有效且可靠的替代方法。 [参考:53]

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