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特定个体的髋关节几何形状会影响步态期间预测的髋关节接触力。

Subject-specific hip geometry affects predicted hip joint contact forces during gait.

作者信息

Lenaerts G, De Groote F, Demeulenaere B, Mulier M, Van der Perre G, Spaepen A, Jonkers I

机构信息

Department of Biomedical Kinesiology, Katholieke Universiteit Leuven, Tervuursevest 101, B-3001 Heverlee, Belgium.

出版信息

J Biomech. 2008;41(6):1243-52. doi: 10.1016/j.jbiomech.2008.01.014. Epub 2008 Mar 17.

DOI:10.1016/j.jbiomech.2008.01.014
PMID:18346745
Abstract

Hip loading affects bone remodeling and implant fixation. In this study, we have analyzed the effect of subject-specific modeling of hip geometry on muscle activation patterns and hip contact forces during gait, using musculoskeletal modeling, inverse dynamic analysis and static optimization. We first used sensitivity analysis to analyze the effect of isolated changes in femoral neck-length (NL) and neck-shaft angle (NSA) on calculated muscle activations and hip contact force during the stance phase of gait. A deformable generic musculoskeletal model was adjusted incrementally to adopt a physiological range of NL and NSA. In a second similar analysis, we adjusted hip geometry to the measurements from digitized radiographs of 20 subjects with primary hip osteoarthrosis. Finally, we studied the effect of hip abductor weakness on muscle activation patterns and hip contact force. This analysis showed that differences in NL (41-74 mm) and NSA (113-140 degrees ) affect the muscle activation of the hip abductors during stance phase and hence hip contact force by up to three times body weight. In conclusion, the results from both the sensitivity and subject-specific analysis showed that at the moment of peak contact force, altered NSA has only a minor effect on the loading configuration of the hip. Increased NL, however, results in an increase of the three hip contact-force components and a reduced vertical loading. The results of these analyses are essential to understand modified hip joint loading, and for planning hip surgery for patients with osteoarthrosis.

摘要

髋关节负荷会影响骨重塑和植入物固定。在本研究中,我们使用肌肉骨骼建模、逆动力学分析和静态优化方法,分析了特定个体的髋关节几何模型对步态期间肌肉激活模式和髋关节接触力的影响。我们首先使用敏感性分析来分析在步态站立期,股骨颈长度(NL)和颈干角(NSA)的单独变化对计算出的肌肉激活和髋关节接触力的影响。对一个可变形的通用肌肉骨骼模型进行逐步调整,以采用NL和NSA的生理范围。在第二项类似分析中,我们根据20名原发性髋关节骨关节炎患者数字化X线片的测量结果调整髋关节几何形状。最后,我们研究了髋外展肌无力对肌肉激活模式和髋关节接触力的影响。该分析表明,NL(41 - 74毫米)和NSA(113 - 140度)的差异会影响站立期髋外展肌的肌肉激活,从而使髋关节接触力增加至体重的三倍。总之,敏感性分析和特定个体分析的结果均表明,在接触力峰值时刻,NSA的改变对髋关节的负荷配置影响较小。然而,NL增加会导致髋关节三个接触力分量增加,垂直负荷降低。这些分析结果对于理解髋关节负荷改变以及为骨关节炎患者规划髋关节手术至关重要。

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