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Knee Joint Loads and Surrounding Muscle Forces during Stair Ascent in Patients with Total Knee Replacement

机译:全膝关节置换术患者在楼梯上升过程中的膝关节负荷和周围的肌肉力量

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摘要

Total knee replacement (TKR) is commonly used to correct end-stage knee osteoarthritis. Unfortunately, difficulty with stair climbing often persists and prolongs the challenges of TKR patents. Complete understanding of loading at the knee is of great interest in order to aid patient populations, implant manufacturers, rehabilitation, and future healthcare research. Musculoskeletal modeling and simulation approximates joint loading and corresponding muscle forces during a movement. The purpose of this study was to determine if knee joint loadings following TKR are recovered to the level of healthy individuals, and determine the differences in muscle forces causing those loadings. Data from five healthy and five TKR patients were selected for musculoskeletal simulation. Variables of interest included knee joint reaction forces (JRF) and the corresponding muscle forces. A paired samples t-test was used to detect differences between groups for each variable of interest (p<0.05). No differences were observed for peak joint compressive forces between groups. Some muscle force compensatory strategies appear to be present in both the loading and push-off phases. Evidence from knee extension moment and muscle forces during the loading response phase indicates the presence of deficits in TKR in quadriceps muscle force production during stair ascent. This result combined with greater flexor muscle forces resulted in similar compressive JRF during loading response between groups.
机译:全膝关节置换术(TKR)通常用于矫正终末期膝骨关节炎。不幸的是,爬楼梯的困难常常持续存在,并延长了TKR专利的挑战时间。为了帮助患者群体,植入物制造商,康复和将来的医疗保健研究,全面了解膝盖的负重感非常重要。肌肉骨骼建模和仿真可以估算运动过程中的关节负荷和相应的肌肉力。这项研究的目的是确定TKR之后的膝关节负荷是否恢复到健康个体的水平,并确定引起这些负荷的肌肉力量的差异。选择来自五名健康患者和五名TKR患者的数据进行肌肉骨骼模拟。感兴趣的变量包括膝关节反作用力(JRF)和相应的肌肉力。配对样本t检验用于检测每个目标变量在组之间的差异(p <0.05)。组之间的峰值关节压缩力没有差异。在加载阶段和下推阶段都出现了一些肌肉力补偿策略。在负荷响应阶段中来自膝盖伸展力矩和肌肉力量的证据表明,在楼梯上升过程中,股四头肌肌肉力量产生的TKR不足。该结果与更大的屈肌力量相结合,在组之间的负荷响应期间产生了相似的压缩JRF。

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