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首页> 外文期刊>Journal of shoulder and elbow surgery >Medial or lateral dislocation (snapping) of a portion of the distal triceps: a biomechanical, anatomic explanation.
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Medial or lateral dislocation (snapping) of a portion of the distal triceps: a biomechanical, anatomic explanation.

机译:肱三头肌远端的内侧或外侧脱位(咬合):一种生物力学的解剖学解释。

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摘要

Medial and lateral snapping (dislocation) of the distal triceps over the epicondyle during elbow flexion has been reported but is frequently misdiagnosed and is not well understood. In this study a mathematical model was designed to simulate the effect that bony abnormalities at the distal humerus and soft tissue variations of the distal triceps have on the line of pull of the triceps. The predictions were then tested on prefabricated and fabricated plastic elbow models, as well as 8 cadaveric elbows. When the bony alignment was altered, varus angulation had the greatest effect: 30 degrees varus malalignment of the distal humerus displaced the centroid of the triceps vector medially by approximately 2.0 cm. Valgus malalignment had a lesser effect: 30 degrees valgus displaced it laterally by 1.5 cm. Negligible effects on the triceps line of pull were seen with internal or external malrotation and with flexion or extension malalignment. Of the soft tissue alterations, displacement of the triceps insertion had a greater effect than movement of the triceps origin. The triceps vector was displaced by approximately 70% of the amount of translation of the triceps insertion. The relationship between the triceps line of pull and the bony alignment is represented by the triceps (T) angle. Our use of the T angle to understand snapping triceps is analogous to the use of the quadriceps (Q) angle for patellar subluxation/dislocation. Treatment should aim to restore normal triceps biomechanics with soft tissue or bony procedures.
机译:在肘关节屈曲过程中,上肱三头肌的内侧和外侧突然折断(脱位),但经常被误诊且了解甚少。在这项研究中,设计了一个数学模型来模拟肱骨远端骨质异常和肱三头肌远端软组织变化对肱三头肌拉力的影响。然后在预制和预制的塑料弯头模型以及8个尸体弯头上测试了这些预测。当改变骨的排列方式时,内翻角作用最大:肱骨远端30度内翻畸形使肱三头肌矢量的质心向内偏移约2.0 cm。外翻畸形的影响较小:30度外翻将其横向移位1.5 cm。在内部或外部旋转不当以及屈曲或伸展不对中时,对三头肌拉力的影响微不足道。在软组织改变中,肱三头肌插入的位移比肱三头肌起源的移动具有更大的影响。三头肌载体的位移量约为三头肌插入翻译量的70%。肱三头肌拉力线与骨对齐之间的关系由肱三头肌(T)角表示。我们使用T角来理解肱三头肌,类似于使用四头肌(Q)角进行pa骨半脱位/脱位。治疗应旨在通过软组织或骨性手术恢复正常的三头肌生物力学。

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