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髋关节发育不良的解剖学畸形会导致步态期间髋臼边缘负荷增加。

Acetabular Edge Loading During Gait Is Elevated by the Anatomical Deformities of Hip Dysplasia.

作者信息

Song Ke, Pascual-Garrido Cecilia, Clohisy John C, Harris Michael D

机构信息

Program in Physical Therapy, Movement Science Research Center, Washington University in St. Louis School of Medicine, St. Louis, MO, United States.

Department of Mechanical Engineering and Materials Science, Washington University in St. Louis, St. Louis, MO, United States.

出版信息

Front Sports Act Living. 2021 Jul 1;3:687419. doi: 10.3389/fspor.2021.687419. eCollection 2021.

Abstract

Developmental dysplasia of the hip (DDH) is a known risk factor for articular tissue damage and secondary hip osteoarthritis. Acetabular labral tears are prevalent in hips with DDH and may result from excessive loading at the edge of the shallow acetabulum. Location-specific risks for labral tears may also depend on neuromuscular factors such as movement patterns and muscle-induced hip joint reaction forces (JRFs). To evaluate such mechanically-induced risks, we used subject-specific musculoskeletal models to compare acetabular edge loading (AEL) during gait between individuals with DDH ( = 15) and healthy controls ( = 15), and determined the associations between AEL and radiographic measures of DDH acetabular anatomy. The three-dimensional pelvis and femur anatomy of each DDH and control subject were reconstructed from magnetic resonance images and used to personalize hip joint center locations and muscle paths in each model. Model-estimated hip JRFs were projected onto the three-dimensional acetabular rim to predict instantaneous AEL forces and their accumulative impulses throughout a gait cycle. Compared to controls, subjects with DDH demonstrated significantly higher AEL in the antero-superior acetabulum during early stance (3.6 vs. 2.8 × BW, ≤ 0.01), late stance (4.3 vs. 3.3 × BW, ≤ 0.05), and throughout the gait cycle (1.8 vs. 1.4 × BWs, ≤ 0.02), despite having similar hip movement patterns. Elevated AEL primarily occurred in regions where the shallow acetabular edge was in close proximity to the hip JRF direction, and was strongly correlated with the radiographic severity of acetabular deformities. The results suggest AEL is highly dependent on movement and muscle-induced joint loading, and significantly elevated by the DDH acetabular deformities.

摘要

发育性髋关节发育不良(DDH)是关节组织损伤和继发性髋关节骨关节炎的已知危险因素。髋臼盂唇撕裂在DDH髋关节中很常见,可能是由于浅髋臼边缘的过度负荷所致。盂唇撕裂的部位特异性风险也可能取决于神经肌肉因素,如运动模式和肌肉引起的髋关节反应力(JRFs)。为了评估这种机械性诱发的风险,我们使用个体特异性肌肉骨骼模型比较了DDH患者(n = 15)和健康对照者(n = 15)在步态期间的髋臼边缘负荷(AEL),并确定了AEL与DDH髋臼解剖结构的影像学测量之间的关联。从磁共振图像重建每个DDH和对照受试者的三维骨盆和股骨解剖结构,并用于个性化每个模型中的髋关节中心位置和肌肉路径。将模型估计的髋关节JRFs投影到三维髋臼边缘,以预测整个步态周期中的瞬时AEL力及其累积冲量。与对照组相比,尽管DDH患者具有相似的髋关节运动模式,但在早期站立(3.6 vs. 2.8×体重,P≤0.01)、晚期站立(4.3 vs. 3.3×体重,P≤0.05)以及整个步态周期(1.8 vs. 1.4×体重秒,P≤0.02)期间,DDH患者的髋臼前上缘AEL显著更高。AEL升高主要发生在浅髋臼边缘与髋关节JRF方向紧密相邻的区域,并且与髋臼畸形的影像学严重程度密切相关。结果表明,AEL高度依赖于运动和肌肉引起的关节负荷,并且会因DDH髋臼畸形而显著升高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0052/8281296/264ffa3ceaab/fspor-03-687419-g0001.jpg

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