Sabalić Srećko, Maričić Hrvoje, Tomičević Zvonimir, Kodvanj Janoš
University Hospital for Traumatology, Sestre milosrdnice University Hospital Center, Zagreb, Croatia
Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Zagreb, Croatia
Acta Clin Croat. 2016 Sep;55(3):381-389. doi: 10.20471/acc.2016.55.03.05.
The aim of the study was to assess the influence of gap shape on biomechanical results in extra-articular distal humeral fracture: with contact on the posterior part (by anterior gap) and contact on ulnar column (by radial gap). The goal was to examine if and to what extent did displacements decrease in comparison with previously examined parallel gap without bony contact. The finite element analysis on the three different plate constructs was performed, i.e. parallel, perpendicular and newly designed Y shape plate were considered. Displacements were measured on articular surface and gap point. The most visible decrease of maximum displacements in the distal part of the model was detected in the Y plate model with axial loading: in case of anterior gap 58.5% and especially at radially formed gap 60.9%. Similarly, at axial loading, displacement at the analyzed point on fracture gap most significantly decreased in Y plate model (by 49.4%) at posterior bony contact. Moreover, the latter showed displacement decrease by 68.5% at ulnar bone contact. Furthermore, if a longer radial plate than the ulnar one was used, varus stress could have been avoided. Study results suggested that sufficient stability could be ensured with the newly designed Y shape plate.
通过前部间隙实现后部接触,以及通过桡侧间隙实现尺骨柱接触。目的是研究与先前研究的无骨接触的平行间隙相比,位移是否以及在多大程度上有所减小。对三种不同的钢板结构进行了有限元分析,即考虑了平行、垂直和新设计的Y形钢板。在关节面和间隙点测量位移。在轴向加载的Y形钢板模型中,模型远端最大位移的减小最为明显:在前部间隙的情况下为58.5%,特别是在桡侧形成的间隙中为60.9%。同样,在轴向加载时,Y形钢板模型中骨折间隙分析点处的位移在后部骨接触时最显著减小(49.4%)。此外,后者在尺骨接触时位移减小了68.5%。此外,如果使用比尺骨侧更长的桡侧钢板,可以避免内翻应力。研究结果表明,新设计的Y形钢板能够确保足够的稳定性。