论文标题

肩袖完整性对反向肩关节置换术前后的负载和运动学的影响

Influence of Rotator Cuff Integrity on Loading and Kinematics Before and After Reverse Shoulder Arthroplasty

论文作者

Péan, Fabien, Favre, Philippe, Goksel, Orcun

论文摘要

反向肩关节置换术(RSA)已成为肩部关节置换的非常普遍的程序,即使对于传统上可以使用解剖学重建的情况。在这项研究中,我们研究了有或没有反义假体的不同肌腱的肩袖撕裂的关节反作用力和肩c骨运动学。前屈曲期间可用的运动捕获数据输入了有限元肌肉骨骼肩部模型,并使用反动力学计算肌肉激活。该模型在体内藻脉关节反作用力(JRF)测量方面进行了验证,并与现有的临床和生物力学数据进行了比较。对于完整的关节以及涉及肩袖撕裂的各种肌腱进行的模拟:上(supraspinatus),上层(supraspinatus and subscapularis)和上层(上张力肌,supraspinatus,infraspinatus and infraspinatus and terres and teres and teres)。在移动肱骨和旋转旋转中心后,重复每个肩袖撕裂条件,以模拟反向假体的效果。分析了压缩,剪切和总JRF的变化以及肩cap骨向上旋转。该模型与体内测量以及现有的临床和生物力学知识进行了比较。模拟的JRF位于体内JRF测量的范围内,并显示了超过90度屈曲的线性增加。用功能性肩袖或孤立的上张上皮撕裂植入反向假体,导致压缩力成分的压缩力成分高于大量的肩袖撕裂(上前或上层)。如此较高的压缩力可能会增加磨损和植入骨折的风险。

Reverse Shoulder Arthroplasty (RSA) has become a very common procedure for shoulder joint replacement, even for scenarios where an anatomical reconstruction would traditionally be used. In this study, we investigate joint reaction forces and scapular kinematics for rotator cuff tears of different tendons with and without a reverse prosthesis. Available motion capture data during anterior flexion was input to a finite-element musculoskeletal shoulder model, and muscle activations were computed using inverse dynamics. The model was validated with respect to in-vivo glenohumeral joint reaction force (JRF) measurements, and also compared to existing clinical and biomechanical data. Simulations were carried out for the intact joint as well as for various tendons involved in a rotator cuff tear: superior (supraspinatus), superior-anterior (supraspinatus and subscapularis), and superior-posterior (supraspinatus, infraspinatus and teres minor). Each rotator cuff tear condition was repeated after shifting the humerus and the glenohumeral joint center of rotation to simulate the effect of a reverse prosthesis. Changes in compressive, shear, and total JRF were analysed, along with scapular upward rotation. The model compared favourably to in-vivo measurements, and existing clinical and biomechanical knowledge. Simulated JRF lie in the ranges of in-vivo JRF measurements and shows a linear increase past 90 degree flexion. Implanting a reverse prosthesis with a functional rotator cuff or with an isolated supraspinatus tear led to over 2 times higher compressive force component than with massive rotator cuff tears (superior-anterior or superior-posterior). Such higher compression forces might increase the risk of wear and implant fracture.

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