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首页> 外文期刊>Journal of shoulder and elbow surgery >Biomechanical effects of malposition of tuberosity fragments on the humeral prosthetic reconstruction for four-part proximal humerus fractures.
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Biomechanical effects of malposition of tuberosity fragments on the humeral prosthetic reconstruction for four-part proximal humerus fractures.

机译:结节碎片位置不当对肱骨近端四部分骨折的肱骨假体重建的生物力学影响。

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摘要

Variable outcomes in the prosthetic reconstruction of 4-part humerus fractures often can be attributed to inconsistent and nonanatomic tuberosity placement. To compare the effects of anatomic (anterior fin) versus nonanatomic (lateral fin) tuberosity placement, we developed a dynamic cadaver model for shoulder motion. With the use of a robotically driven, computer-controlled articulator, we tested external rotation torque in 5 fresh human shoulders. After evaluation of the intact shoulders, we experimentally induced 4-part humerus fractures in the specimens. These were then repaired by hemiarthroplasty, with the use of standard techniques to secure the greater and lesser tuberosities in either anatomic or nonanatomic positions; order was randomized. Nonanatomic tuberosity reconstruction led to significant impairment in external rotation kinematics and an 8-fold increase in torque requirements (P =.001). In contrast, anatomic reconstruction produced results indistinguishable from normal shoulder controls. This study underscores the importance of rotational alignment of tuberosities during reconstruction. Failure to properly position tuberosity fragments in the horizontal plane may result in insurmountable postoperative motion restriction.
机译:4例肱骨骨折假体重建中的可变结果通常可归因于不一致和非解剖的结节位置。为了比较解剖(前鳍)和非解剖(外鳍)结节位置的影响,我们开发了一个用于肩部运动的动态尸体模型。通过使用机器人驱动,计算机控制的咬合架,我们在5个新鲜的人类肩膀上测试了外部旋转扭矩。在评估完好肩膀后,我们通过实验在标本中诱发了4部分肱骨骨折。然后使用标准技术通过半关节置换术修复这些假体,以确保在解剖或非解剖位置的结节越来越大。顺序是随机的。非解剖性结节重建导致外旋运动学严重受损,扭矩要求增加8倍(P = .001)。相比之下,解剖重建产生的结果与正常的肩部对照无法区别。这项研究强调了重建过程中结节旋转对准的重要性。未能正确地将结节碎片放置在水平面中可能会导致无法克服的术后运动限制。

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