Langenderfer Joseph E, Carpenter James E, Johnson Marjorie E, An Kai-Nan, Hughes Richard E
MedSport and Orthopaedic Research Laboratories, University of Michigan, Ann Arbor, MI 48106, USA.
Ann Biomed Eng. 2006 Mar;34(3):465-76. doi: 10.1007/s10439-005-9045-9. Epub 2006 Feb 11.
The reigning paradigm of musculoskeletal modeling is to construct deterministic models from parameters of an "average" subject and make predictions for muscle forces and joint torques with this model. This approach is limited because it does not perform well for outliers, and it does not model the effects of population parameter variability. The purpose of this study was to simulate variability in musculoskeletal parameters on glenohumeral external rotation strength in healthy normals, and in rotator cuff tear case using a Monte Carlo model. The goal was to determine if variability in musculoskeletal parameters could quantifiably explain variability in glenohumeral external rotation strength. Multivariate Gamma distributions for musculoskeletal architecture and moment arm were constructed from empirical data. Gamma distributions of measured joint strength were constructed. Parameters were sampled from the distributions and input to the model to predict muscle forces and joint torques. The model predicted measured joint torques for healthy normals, subjects with supraspinatus tears, and subjects with infraspinatus-supraspinatus tears with small error. Muscle forces for the three conditions were predicted and compared. Variability in measured torques can be explained by differences in parameter variability.
肌肉骨骼建模的主流范式是根据“平均”受试者的参数构建确定性模型,并用该模型预测肌肉力量和关节扭矩。这种方法存在局限性,因为它对异常值的表现不佳,且未对群体参数变异性的影响进行建模。本研究的目的是使用蒙特卡洛模型模拟健康正常人以及肩袖撕裂病例中肌肉骨骼参数变异性对盂肱关节外旋力量的影响。目标是确定肌肉骨骼参数的变异性是否能够定量解释盂肱关节外旋力量的变异性。根据经验数据构建了肌肉骨骼结构和力臂的多元伽马分布。构建了测量关节强度的伽马分布。从分布中采样参数并输入模型以预测肌肉力量和关节扭矩。该模型以较小误差预测了健康正常人、冈上肌撕裂受试者以及冈下肌 - 冈上肌撕裂受试者的测量关节扭矩。预测并比较了三种情况下的肌肉力量。测量扭矩的变异性可以通过参数变异性的差异来解释。