脚踝
运动范围
步态
踝关节背屈
物理医学与康复
刚度
下肢
生物力学
步态分析
力矩(物理)
医学
物理疗法
解剖
材料科学
物理
外科
复合材料
经典力学
作者
Mariana R.C. Aquino,Renan Alves Resende,Richard E.A. van Emmerik,Thales R. Souza,Sérgio T. Fonseca,Renata Noce Kirkwood,Juliana M. Ocarino
标识
DOI:10.1016/j.gaitpost.2024.01.020
摘要
The ankle dorsiflexion range of motion (ADF-ROM) during single support phase allows elastic energy storage in the calcaneal tendon, contributing to advance the body forward. Reduced ADF-ROM may influence lower limb kinetics and stiffness. What is the influence of reduced passive ADF-ROM on lower limb internal moments and stiffness during gait? Thirty-two participants, classified into two groups according to passive ADF-ROM (smaller than 10° and greater than 15°), were submitted to gait assessment at self-selected speed with a force platform and a three-dimensional motion analysis system. Statistical parametrical mapping (SPM) analyses were used to compare the lower limbs' internal moments between groups. Independent t-tests analyzed the differences between groups on lower limb stiffness during gait. The lower ADF-ROM group had greater knee flexor moment (terminal stance and push-off), greater ankle abductor (i.e., shank internal rotator) moment in terminal stance and greater knee internal rotator moment in mid to terminal stance. The lower ADF-ROM group also had higher lower limb stiffness during gait. Individuals with reduced passive ADF-ROM had greater lower limb stiffness and adopted a gait pattern with increased knee and ankle moments, suggesting increased loading at these joints.
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