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Development of a Full Flexion 3D Musculoskeletal Model of the Knee Considering Intersegmental Contact During High Knee Flexion Movements

机译:在高膝关节屈曲运动期间,膝关节膝关节的全屈曲3D肌肉骨骼模型

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摘要

A musculoskeletal model of the right lower limb was developed to estimate 3D tibial contact forces in high knee flexion postures. This model determined the effect of intersegmental contact between thigh-calf and heel-gluteal structures on tibial contact forces. This model includes direct tracking and 3D orientation of intersegmental contact force, femoral translations from in vivo studies, wrapping of knee extensor musculature, and a novel optimization constraint for multielement muscle groups. Model verification consisted of calculating the error between estimated tibial compressive forces and direct measurements from the Grand Knee Challenge during movements to -120 degrees of knee flexion as no high knee flexion data are available. Tibial compression estimates strongly fit implant data during walking (R-2 = .83) and squatting (R-2 = .93) with a root mean squared difference of .47 and .16 body weight, respectively. Incorporating intersegmental contact significantly reduced model estimates of peak tibial anterior-posterior shear and increased peak medial-lateral shear during the static phase of high knee flexion movements by an average of .33 and .07 body weight, respectively. This model supports prior work in that intersegmental contact is a critical parameter when estimating tibial contact forces in high knee flexion movements across a range of culturally and occupationally relevant postures.
机译:开发了右下肢的肌肉骨骼模型,以估算高膝关节屈曲姿势的3D胫骨接触力。该模型确定了大腿 - 小牛与胫骨粘膜结构之间的胫骨接触对胫骨接触力的影响。该型号包括基于体内研究的股骨翻译,膝关节延伸肌肉术的股骨翻译,以及多元素肌肉群的新颖优化约束的直接跟踪和3D方向。模型验证包括计算估计的胫骨压缩力与大膝攻击之间的直接测量,因为没有高膝部屈曲数据,在移动到-120度膝关节弯曲期间的大膝攻击。胫骨压缩在步行(R-2 = 0.83)期间估计强度拟合植入物数据,并蹲下(R-2 = .93),分别具有根部平均平均差异.47和.16体重。在高膝部屈曲运动的静电期间,掺入峰胫前后剪切和增加的峰内侧剪切的模型估计,平均值分别为0.33和.07体重。该型号支持在该模型中的工作中的工作,即在一系列文化和职业相关姿势的高膝关节屈曲运动中估计胫骨接触力时是关键参数。

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