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解剖型全肩关节置换术后肱骨组件位置不良的生物力学后果。

Biomechanical consequences of humeral component malpositioning after anatomical total shoulder arthroplasty.

机构信息

Laboratory of Biomechanical Orthopedics, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

J Shoulder Elbow Surg. 2010 Dec;19(8):1184-90. doi: 10.1016/j.jse.2010.06.006. Epub 2010 Oct 16.

Abstract

HYPOTHESIS

We hypothesized that the malpositioning of the humeral component can preclude the long-term success of anatomical total shoulder arthroplasty. The goal of this study was to evaluate the mechanical consequences of superior and inferior malpositioning of the humeral head.

MATERIALS AND METHODS

A numerical musculoskeletal model of the shoulder joint allowing natural humeral head translation was used to simulate a loaded abduction movement controlled by muscular activation. An inferior and superior malpositioning of 5 mm were compared to an optimal positioning. Impingements, articular contact pattern, and cement stress were evaluated.

RESULTS

Inferior malpositioning of the humeral head induced impingement and limited the abduction level, while superior malpositioning increased the subluxation risk. Both inferior and superior malpositioning increased the stress level within the cement mantle.

DISCUSSION

This numerical study highlights the importance of an anatomical reconstruction of the glenohumeral surfaces for the success rate of anatomical total shoulder arthroplasty.

摘要

假设

我们假设肱骨头的位置不当会妨碍解剖型全肩关节置换术的长期成功。本研究的目的是评估肱骨头上下位置不当的力学后果。

材料和方法

使用允许自然肱骨头平移的肩部数字肌肉骨骼模型来模拟受肌肉激活控制的加载外展运动。将 5 毫米的下和上错位与最佳位置进行比较。评估了撞击、关节接触模式和水泥应力。

结果

肱骨头的下错位导致撞击并限制了外展程度,而上错位增加了半脱位的风险。下错位和上错位都增加了水泥覆盖层内的应力水平。

讨论

这项数值研究强调了为解剖型全肩关节置换术的成功率对肩盂和肱骨头表面进行解剖重建的重要性。

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