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Leg muscles that mediate stability: mechanics and control of two distal extensor muscles during obstacle negotiation in the guinea fowl

机译:调节稳定性的腿部肌肉:豚鼠障碍物协商过程中两条远端伸肌的力学和控制

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摘要

Here, we used an obstacle treadmill experiment to investigate the neuromuscular control of locomotion in uneven terrain. We measured in vivo function of two distal muscles of the guinea fowl, lateral gastrocnemius (LG) and digital flexor-IV (DF), during level running, and two uneven terrains, with 5 and 7 cm obstacles. Uneven terrain required one step onto an obstacle every four to five strides. We compared both perturbed and unperturbed strides in uneven terrain to level terrain. When the bird stepped onto an obstacle, the leg became crouched, both muscles acted at longer lengths and produced greater work, and body height increased. Muscle activation increased on obstacle strides in the LG, but not the DF, suggesting a greater reflex contribution to LG. In unperturbed strides in uneven terrain, swing pre-activation of DF increased by 5 per cent compared with level terrain, suggesting feed-forward tuning of leg impedance. Across conditions, the neuromechanical factors in work output differed between the two muscles, probably due to differences in muscle–tendon architecture. LG work depended primarily on fascicle length, whereas DF work depended on both length and velocity during loading. These distal muscles appear to play a critical role in stability by rapidly sensing and responding to altered leg–ground interaction.
机译:在这里,我们使用了障碍跑步机实验来研究在崎terrain地形中运动的神经肌肉控制。我们在水平跑步过程中,以及在5厘米和7厘米障碍物的两个不平坦地形上,测量了珍珠鸡的两个远端肌肉,外侧腓肠肌(LG)和数字屈肌IV(DF)的体内功能。不平坦的地形每四到五步就需要向障碍物迈出一步。我们将不平坦地形上的摄动步幅和非摄动步幅都比较了。当小鸟踩到障碍物时,腿蹲下,两条肌肉的长度变长,工作量增加,身高增加。 LG障碍物的步幅增加,但DF却没有出现肌肉激活,这说明LG反射作用更大。在崎uneven不平的地形中步伐平稳,与水平地形相比,DF的挥杆预激活增加了5%,这表明前肢阻抗的前馈调整。在各种情况下,两条肌肉之间工作输出的神经机械因素不同,这可能是由于肌腱结构的差异所致。 LG的工作主要取决于束的长度,而DF的工作取决于装载期间的长度和速度。这些远端肌肉似乎可以通过快速感知并响应变化的腿与地面的相互作用,在稳定性中起关键作用。

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