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A musculoskeletal shoulder simulation of moment arms and joint reaction forces after medialization of the supraspinatus footprint in rotator cuff repair

机译:旋转袖口修复中穗姿势占地面积术后力矩臂和关节反应力的肌肉骨骼肩部模拟

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A non-anatomical reinsertion of the supraspinatus medially to the original footprint to avoid over-tensioning of the tendon in large and retracted tears is one surgical option in rotator cuff (RC) repair. The purpose of the study was to determine the biomechanical effects on the glenohumeral joint with regard to this surgical technique. A modified musculoskeletal computational shoulder model was used to evaluate the change in moment arms and muscle forces of the RC and the co-contracting muscles and the alteration of the joint reaction forces (compressive and shear forces) after reinsertion of the supraspinatus 5 mm, 10 mm, 15 mm and 20 mm medially to the original footprint. A medialization of the supraspinatus reduces its moment arm in glenohumeral abduction. In case of a medialization of the attachment of 15 mm and 20 mm, the supraspinatus restricts glenohumeral abduction at 54 degrees and 68 degrees. In glenohumeral forward flexion and in lower degrees of internal rotation the moment arm of the supraspinatus increases for a medialized tendon attachment and decreases in external rotation in relation to the anatomical condition. A medialization of the supraspinatus insertion point yields in an increase in muscle force for abduction, internal and external rotation. In the present model a medially non-anatomic reinsertion reduces significantly the compressive glenohumeral joint reaction and the glenohumeral stability. Moreover, the results show that a medialization of the supraspinatus leads to a reduction of the supraspinatus moment arm especially in abduction. This leads to an increase of a compensatory supraspinatus load for stabilization the humerus in space, which may potentially cause a postoperative overload of the tendon-bone-complex.
机译:冈上肌的非解剖学再插入原始占地面积,以避免肌腱过度张紧,在大缩回的撕裂中是旋转袖口(RC)修复的一个手术选择。该研究的目的是确定该手术技术对Glenohumern关节的生物力学作用。修饰的肌肉骨骼计算肩部模型用于评估RC的时刻臂和肌肉力的变化以及共收缩肌肉,并在Supraspinatus 5mm,10的再生中改变联合反应力(压缩和剪切力)的变化MM,15毫米和20毫米内侧到原始占地面积。 Supraspinatus的中介术减少了其胶质妇产绑架的时刻臂。在血管连接的情况下为15mm和20mm,Supraspinatus在54度和68度下限制GlenohumerAnabal Buccaction。在GlenohumeraLs向前屈曲和较低程度的内部旋转中,Supraspinatus的力矩臂随着媒体化的肌腱附着而增加,并且与解剖条件相关的外部旋转降低。血上肌肉插入点的介化在肌肉力量增加,内部和外部旋转的增加中。在本模型中,中间非解剖再生反应显着降低了压缩胶质形颈部关节反应和胶质形状稳定性。此外,结果表明,冈上肌的中介导致Supraspinatus Mocts Arm的减少,特别是在绑架中。这导致增加了用于稳定空间中肱骨的补偿性冈上载荷的载荷,这可能导致肌腱骨骼复合物的术后过载。

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