Department of Industrial Engineering, Clemson University, Freeman Hall, Clemson, SC, 29634, USA.
Department of Industrial and Systems Engineering, Virginia Tech, Blacksburg, VA, 24061, USA.
Ann Biomed Eng. 2022 Aug;50(8):964-977. doi: 10.1007/s10439-022-02973-6. Epub 2022 Apr 27.
We assessed the effects of using a passive back-support exoskeleton (BSE) on lower limb joint kinematics and kinetics during level walking. Twenty young, healthy participants completed level walking trials while wearing a BSE (backX) with three different levels of hip-extension support torque (i.e., no torque, low, and high) and in a control condition (no-BSE). When hip extension torques were required for gait-initial 0-10% and final 75-100% of the gait cycle-the BSE with high supportive torque provided ~ 10 Nm of external hip extension torque at each hip, resulting in beneficial changes in participants' gait patterns. Specifically, there was a ~ 10% reduction in muscle-generated hip extension torque and ~ 15-20% reduction in extensor power. During the stance-swing transition, however, BSE use produced undesirable changes in lower limb kinematics (e.g., 5-20% increase in ankle joint velocity) and kinetics (e.g., ~ 10% increase in hip flexor, knee extensor, and ankle plantarflexor powers). These latter changes likely stemmed from the need to increase mechanical energy for propelling the leg into the swing phase. BSE use may thus increase the metabolic cost of walking. Whether such use also leads to muscle fatigue and/or postural instability in long-distance walking needs to be confirmed in future work.
我们评估了在水平步行时使用被动式背部支撑外骨骼(BSE)对下肢关节运动学和动力学的影响。二十名年轻健康的参与者在穿着 BSE(backX)并具有三种不同的髋关节伸展支撑扭矩水平(即无扭矩、低扭矩和高扭矩)和控制条件(无 BSE)下完成了水平步行试验。当髋关节伸展扭矩在步态初始的 0-10%和最后 75-100%的步态周期内需要时- BSE 高支撑扭矩在每个髋关节处提供约 10Nm 的外部髋关节伸展扭矩,导致参与者的步态模式发生有益的变化。具体而言,肌肉产生的髋关节伸展扭矩减少了约 10%,伸展力减少了约 15-20%。然而,在站立-摆动过渡期间,BSE 的使用会导致下肢运动学(例如,踝关节速度增加 5-20%)和动力学(例如,髋关节屈肌、膝关节伸肌和踝关节跖屈肌功率增加约 10%)的不良变化。这些后期变化可能源于需要增加机械能量以将腿部推进摆动阶段。因此,BSE 的使用可能会增加步行的代谢成本。在未来的工作中需要确认这种使用是否还会导致肌肉疲劳和/或长距离步行时的姿势不稳定。