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Finite Element Stress Analysis of Keyhole Plate System in Sagittal Split Ramus Osteotomy

机译:矢状分裂拉米骨膜骨膜骨髓系统的有限元应力分析

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A new miniplate applied differently from conventional application method for bone fixation has been developed. The novel approach is the insertion of the screw into the bone before miniplate installation. This study aimed to assess the stress distribution of a newly designed Yang’s Keyhole (YK)- plate for segmental-bone fixation during sagittal split ramus osteotomy (SSO). Moreover, the effectiveness of the YK-plate system based on the clinical results was determined. The YK-plate system has a widened hole in the anterior region to permit a screw-head to be screwed through the system. The stress distribution using the finite-element analysis method was compared between in the case of the YK-plate system and the case of existing mini-plate fixation technique. Moreover, the clinical results of patients were evaluated during the follow-up examination periods. No critical complications in any of the six patients were reported during the four-month follow-up period. The result of the stress distribution using finite-element analysis showed a similar trend in all four fixation methods. The YK-plate system can be applied to fixation during SSO and allow for mechanically stable and convenient application.
机译:已经开发出一种从常规应用方法应用用于骨固定的新型微型板。新颖的方法是在微型板安装之前将螺钉插入骨中。本研究旨在评估在矢状分裂拉米术(SSO)期间新设计的阳孔孔(YK)板的应力分布。此外,确定了基于临床结果的YK板系统的有效性。 YK板系统在前部区域具有加宽的孔,以允许螺纹头拧到系统中。在YK板系统的情况下比较了使用有限元分析方法的应力分布和现有的微型板固定技术的情况。此外,患者的临床结果在后续检查期间评估。在四个月的随访期间报告了六名患者中任何一个关键并发症。使用有限元分析的应力分布的结果显示了所有四种固定方法的相似趋势。在SSO期间,YK板系统可应用于固定,并允许机械稳定和方便的应用。

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