Arellano Christopher J, Layne Charles S, O'Connor Daniel P, Scott-Pandorf Melissa, Kurz Max J
Laboratory of Integrated Physiology, University of Houston, Houston, TX, USA.
Med Sci Sports Exerc. 2009 Mar;41(3):620-7. doi: 10.1249/MSS.0b013e31818a0ea4.
We used methods from dynamical system analysis to investigate the effect of carrying external loads on the stability of the locomotive system and sagittal plane kinematics. We hypothesized that carrying an additional load at the waist would 1) decrease the dynamic stability of the locomotive system and 2) cause changes in the location of the Poincaré map's equilibrium point for the hip, the knee, and the ankle joint kinematics.
Lower extremity kinematics were recorded for 23 subjects as they walked on a treadmill at their preferred speed while carrying external loads of 10%, 20%, and 30% of their body weight around their waist. Gait stability was evaluated by computing the eigenvalues of the locomotive system at the instance of heel contact and midswing. Changes in the hip, the knee, and the ankle's equilibrium point of the Poincaré sections were used to determine whether there were changes in the joint kinematics while carrying external loads.
No significant differences in sagittal plane stability were found between the respective load carrying conditions (P > 0.05). Significant changes (P < 0.05) in the equilibrium points of the hip and the knee were found at heel contact and midswing.
The data suggest that humans are capable of maintaining sagittal plane stability while carrying loads up to 30% of their body weight.
我们运用动力系统分析方法,研究背负外部负荷对 locomotive 系统稳定性及矢状面运动学的影响。我们假设在腰部额外负重会:1)降低 locomotive 系统的动态稳定性;2)导致髋关节、膝关节和踝关节运动学的庞加莱映射平衡点位置发生变化。
记录 23 名受试者在跑步机上以其偏好速度行走时的下肢运动学数据,同时他们在腰部背负相当于其体重 10%、20%和 30%的外部负荷。通过计算足跟触地和摆动中期 locomotive 系统的特征值来评估步态稳定性。利用庞加莱截面中髋关节、膝关节和踝关节平衡点的变化,来确定背负外部负荷时关节运动学是否发生变化。
各负重条件下矢状面稳定性无显著差异(P > 0.05)。在足跟触地和摆动中期,髋关节和膝关节的平衡点有显著变化(P < 0.05)。
数据表明,人类在背负高达其体重 30%的负荷时,能够保持矢状面稳定性。