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Dynamic hip joint stiffness in individuals with total hip arthroplasty: Relationships between hip impairments and dynamics of the other joints.

机译:全髋关节置换患者的动态髋关节僵硬度:髋关节功能障碍与其他关节动力学之间的关系。

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摘要

BACKGROUND: Little is known about hip joint stiffness during walking (dynamic joint stiffness) and the effect of hip impairments on biomechanical alterations of other joints in patients with total hip arthroplasty. METHODS: Twenty-four patients (mean age 61.7years) who underwent unilateral (n=12) or bilateral total hip arthroplasty (n=12) and healthy subjects (n=12) were recruited. In addition to kinematic and kinetic variables, dynamic hip joint stiffness which was calculated as an angular coefficient of linear regression of the plot of the hip flexion moment vs. hip extension angle during the late stance of gait, was measured. Group differences were compared using one-way ANOVA and Tukey's post-hoc test, and relationships between primary hip impairments and secondary gait impairments were found using partial correlation coefficients adjusted for gait speed and stride length. FINDINGS: Dynamic hip joint stiffness was 47% higher on the side with the more pronounced limp in patients with bilateral arthroplasty than in healthy controls. In the same patients, increased dynamic hip joint stiffness was significantly associated especially with increased ankle plantarflexion moment on the ipsilateral side. In patients with unilateral arthroplasty, decreased hip power was significantly related to increased ankle plantarflexor power, only on the non-operated side. INTERPRETATION: We found that dynamic hip joint stiffness was an important factor in assessing relationships between hip impairments and dynamics in other joints, especially in patients with bilateral total hip arthroplasty. The effects of altering hip joint stiffness on gait biomechanics need to be explored.
机译:背景:关于全髋关节置换术患者行走过程中髋关节僵硬(动态关节僵硬)以及髋关节损伤对其他关节的生物力学改变的影响知之甚少。方法:招募了24例(平均年龄61.7岁)行单侧(n = 12)或双侧全髋关节置换术(n = 12)和健康受试者(n = 12)。除了运动学和动力学变量,还测量了动态髋关节刚度,该刚度是根据步态后期步态中髋部屈曲力矩与髋部伸展角曲线的线性回归的角系数计算的。使用单向方差分析和Tukey事后检验比较组差异,并使用针对步态速度和步幅长度调整的部分相关系数,发现原发性髋关节损伤与继发性步态障碍之间的关系。结果发现,与健康对照组相比,双侧关节置换术患者的一侧动态髋关节僵硬程度高47%,且mp行更为明显。在相同的患者中,动态髋关节僵硬度的增加与同侧的踝plant屈力矩增加显着相关。在单侧关节置换术患者中,仅在非手术侧,髋关节力量的下降与踝plant屈力的增加显着相关。解释:我们发现,动态髋关节僵硬度是评估髋关节损伤与其他关节动力学之间关系的重要因素,尤其是在双侧全髋关节置换术患者中。需要探讨改变髋关节刚度对步态生物力学的影响。

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