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Knee flexion contracture will lead to mechanical overload in both limbs: A simulation study using gait analysis.

机译:膝关节屈曲挛缩会导致双侧肢的机械负荷过重:使用步态分析进行的模拟研究。

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摘要

The purpose of the current study was to investigate the effect of knee flexion contracture on the knee mechanics both in affected and contralateral limbs during gait. Ten healthy old women, with mean age of 62 years, participated. Unilateral knee flexion contractures of 0, 15, and 30 degrees were simulated with a knee brace. All subjects performed walking trials with or without the simulation. Net knee extension moments, net knee adduction moments (%BW Ht), external knee forces (%BW), and maximum axial loading rate (%BW/s) at the knee were calculated both in contracture side and non-contracture side under different contracture conditions. Bilateral net knee extension moment gradually increased as the angle of contracture increased. The net knee extension moments in non-contracture limb were significantly larger with 15 and 30 degrees contracture than those without the contracture. Net knee adduction moment in non-contracture limb significantly increased with 15 and 30 degrees contracture. The knee shearing forces in contracture side and the knee compressive force in non-contracture side also significantly increased with 15 and 30 degrees simulation. As the flexion contracture became greater than 15 degrees , maximum axial loading rate also significantly increased in non-contracture side. From our results, the knee flexion contracture greater than 15 degrees led to mechanical overloads in both limbs. Correction of the contracture is clinically important to avoid any adverse effect.
机译:本研究的目的是调查步态中患肢和对侧肢体屈膝挛缩对膝关节力学的影响。十名平均年龄为62岁的健康老年妇女参加了会议。用护膝垫模拟了0、15和30度的单侧膝盖屈曲挛缩。所有受试者都在有或没有模拟的情况下进行了步行试验。在不同的收缩力侧和非收缩力侧,计算膝盖的净膝盖伸展力矩,净膝盖内收力矩(%BW Ht),膝盖外力(%BW)和最大轴向负荷率(%BW / s)。挛缩状况。随着挛缩角度的增加,双侧净膝关节伸展力矩逐渐增加。非挛缩肢体在15度和30度挛缩时的净膝盖伸展力矩明显大于没有挛缩的肢体。挛缩15和30度时,非挛缩性肢体的净膝盖内收力矩显着增加。在15度和30度模拟中,挛缩侧的膝盖剪切力和非收缩侧的膝盖压缩力也显着增加。当屈曲挛缩度大于15度时,非收缩侧最大轴向负荷率也显着增加。从我们的结果来看,膝盖屈曲挛缩大于15度会导致双侧肢的机械超负荷。挛缩的矫正对避免任何不良影响在临床上很重要。

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