1 School of Human Movement and Nutrition Sciences, University of Queensland , St Lucia, Queensland , Australia.
2 Sport and Health Sciences, College of Life and Environmental Sciences, University of Exeter , Exeter , UK.
J R Soc Interface. 2019 Jan 31;16(150):20180680. doi: 10.1098/rsif.2018.0680.
The foot has been considered both as an elastic mechanism that increases the efficiency of locomotion by recycling energy, as well as an energy sink that helps stabilize movement by dissipating energy through contact with the ground. We measured the activity of two intrinsic foot muscles, flexor digitorum brevis (FDB) and abductor hallucis (AH), as well as the mechanical work performed by the foot as a whole and at a modelled plantar muscle-tendon unit (MTU) to test whether these passive mechanics are actively controlled during stepping. We found that the underlying passive visco-elasticity of the foot is modulated by the muscles of the foot, facilitating both dissipation and generation of energy depending on the mechanical requirements at the centre of mass (COM). Compared to level ground stepping, the foot dissipated and generated an additional -0.2 J kg and 0.10 J kg (both p < 0.001) when stepping down and up a 26 cm step respectively, corresponding to 21% and 10% of the additional net work performed by the leg on the COM. Of this compensation at the foot, the plantar MTU performed 30% and 89% of the work for step-downs and step-ups, respectively. This work occurred early in stance and late in stance for stepping down respectively, when the activation levels of FDB and AH were increased between 69 and 410% compared to level steps (all p < 0.001). These findings suggest that the energetic function of the foot is actively modulated by the intrinsic foot muscles and may play a significant role in movements requiring large changes in net energy such as stepping on stairs or inclines, accelerating, decelerating and jumping.
脚被认为既是一个弹性机构,通过回收能量来提高运动效率,又是一个能量汇,通过与地面接触来耗散能量从而帮助稳定运动。我们测量了两个内在足部肌肉,即趾短屈肌(FDB)和展肌(AH),以及整个足部和模拟足底肌肉肌腱单元(MTU)所做的机械功,以测试这些被动力学是否在步态中被主动控制。我们发现,足部的潜在被动粘弹性是由足部肌肉调节的,根据质心(COM)的力学要求,促进能量的耗散和产生。与平地行走相比,当分别从 26 厘米高的台阶上走下和走上时,脚分别耗散和产生了额外的-0.2 J/kg 和 0.10 J/kg(均 p < 0.001),这相当于腿部在 COM 上额外净功的 21%和 10%。在脚部的这种补偿中,足底 MTU 分别完成了步下和步上的 30%和 89%的功。对于步下,当 FDB 和 AH 的激活水平增加 69%至 410%时,步下的工作发生在支撑相的早期和晚期,而对于步上,工作发生在支撑相的晚期,当时 FDB 和 AH 的激活水平增加了 69%至 410%(均 p < 0.001)。这些发现表明,足部的能量功能是由内在足部肌肉主动调节的,可能在需要大量净能量变化的运动中发挥重要作用,例如上下楼梯或斜坡、加速、减速和跳跃。