Three-dimensional finite element model of elbow was established to study the effect of medial collateral ligament (MCL) in maintaining the stability of elbow joint. In the present study a three-dimensional geometric model of elbow joint was established by reverse engineering method based on the computed tomography (CT) image of healthy human elbow. In the finite element pre-processing software, the ligament and articular cartilage were constructed according to the anatomical structure, and the materials and contacts properties were given to the model. In the neutral forearm rotation position and 0° flexion angle, by comparing the simulation data of the elbow joint with the experimental data, the validity of the model is verified. The stress value and stress distribution of medial collateral ligaments were calculated at the flexion angles of elbow position in 15°, 30°, 45°, 60°, 75°, 90°, 105°, 120°, 135°, respectively. The result shows that when the elbow joint loaded at different flexion angles, the anterior bundle has the largest stress, followed by the posterior bundle, transverse bundle has the least, and the stress value of transverse bundle is trending to 0. Therefore, the anterior bundle plays leading role in maintaining the stability of the elbow, the posterior bundle plays supplementary role, and the transverse bundle does little. Furthermore, the present study will provide theoretical basis for clinical recognizing and therapy of elbow instability caused by medial collateral ligament injury.
通过建立肘关节三维有限元模型,研究内侧副韧带维持肘关节稳定性的作用。本文基于正常人体肘关节计算机断层扫描(CT)图像数据,运用逆向工程方法建立肘关节三维几何模型。在有限元前处理软件中根据解剖学结构直接构建韧带和关节面软骨,并为模型赋予材料及接触。通过将处于中立 0° 位的肘关节仿真与试验数据对比,验证了模型的有效性。继而计算肘关节中立位分别屈曲 15、30、45、60、75、90、105、120、135° 时内侧副韧带的应力大小及分布。结果表明肘关节在不同屈曲角度受力时,内侧副韧带前束承受的应力最大,后束次之,斜束承受的应力最小,数值趋于 0。由此可以推断,肘关节内侧副韧带在维持肘关节稳定方面,前束起主导作用,后束起辅助作用,斜束起的作用最小。本研究可为由内侧副韧带损伤所引起的肘关节不稳定的临床治疗提供理论依据。.
Keywords: elbow joint; flexion; medial collateral ligament; stability; stress.