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首页> 外文期刊>The Journal of Experimental Biology >The independent effect of added mass on the stability of the sagittal plane leg kinematics during steady-state human walking
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The independent effect of added mass on the stability of the sagittal plane leg kinematics during steady-state human walking

机译:稳态人体行走过程中附加质量对矢状平面腿运动学稳定性的独立影响

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This study investigated the independent effect of added mass on the stability of the leg kinematics during human walking. We reasoned that adding mass would influence the body's inertial state and thus challenge the ability of the leg to redirect and accelerate the total mass of the body while walking. We hypothesized that walking with added mass would reduce the stability of the leg kinematics. Lower extremity sagittal plane joint kinematics were recorded for 23 subjects as they walked on a treadmill at their preferred speed with and without added mass. The total mass of each subject was manipulated with combinations of simulated reduced gravity and added load. The stability of the leg kinematics was evaluated by computing the eigenvalues of the Poincare map (i.e. Floquet analysis) that defined the position and velocity of the right hip, knee and ankle at heel-contact and mid-swing. Significant differences in stability were found between the various added mass conditions (P=0.040) and instant in the gait cycle (P=0.001). Post-hoc analysis revealed that walking with 30% added mass compromised the stability of the leg kinematics compared with walking without additional mass (P=0.031). In addition, greater instability was detected at the instance of heel-contact compared with mid-swing (P=0.001). Our results reveal that walking with added mass gives rise to greater disturbances in the leg kinematics, and may be related to the redirection and acceleration of the body throughout the gait cycle. Walking with added mass reduces the stability of the leg kinematics and possibly the overall balance of the walking pattern.
机译:这项研究调查了附加质量对人体行走过程中腿部运动学稳定性的独立影响。我们认为增加质量会影响身体的惯性状态,从而挑战腿在行走时重定向和加速身体总质量的能力。我们假设步行时增加质量会降低腿部运动学的稳定性。记录了23名受试者在有或没有增加体重的情况下以他们喜欢的速度在跑步机上行走时的下肢矢状面关节运动学。通过模拟降低的重力和增加的负荷的组合来控制每个受试者的总质量。通过计算Poincare图的特征值(即Floquet分析)来评估腿部运动学的稳定性,该图定义了脚后跟接触和挥杆中段时右髋,膝和踝的位置和速度。发现在各种附加质量条件(P = 0.040)和步态周期瞬间(P = 0.001)之间,稳定性存在显着差异。事后分析显示,与不增加质量的情况相比,增加30%的质量的情况会损害腿部运动学的稳定性(P = 0.031)。此外,与中摆相比,脚跟接触时的不稳定性更大(P = 0.001)。我们的研究结果表明,步行时增加质量会导致腿部运动学方面的较大障碍,并且可能与整个步态周期中身体的重定向和加速度有关。附加行走会降低腿部运动学的稳定性,并可能会降低行走模式的总体平衡。

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