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首页> 外文期刊>Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology and Endodontics >Stability of locking and conventional 2.0-mm miniplate/screw systems after sagittal split ramus osteotomy: finite element analysis.
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Stability of locking and conventional 2.0-mm miniplate/screw systems after sagittal split ramus osteotomy: finite element analysis.

机译:矢状劈裂支截骨术后锁定和传统的2.0毫米微型钢板/螺钉系统的稳定性:有限元分析。

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摘要

OBJECTIVE: The aim of this study was to evaluate the mechanical stresses over the bone and hardware after sagittal split ramus osteotomy (SSRO) fixed with standard titanium or locking plate/screws using finite element analysis. STUDY DESIGN: A 3-dimensional finite element model of the mandible was created, and SSRO and 5 mm advancement was simulated on a computer model. The model was fixed with either 2.0-mm titanium conventional miniplate/screw or 2.0-mm titanium locking miniplate/screw system, and oblique 200 N bite force was applied. RESULTS: The values of von Mises stresses in the cortical layer of the distal segment using the locking plate system was higher. However, in the cortical layer of the proximal segment the stresses were higher at conventional plate system. In the spongiosa layers of both segments, stresses were higher with the conventional plate system. CONCLUSION: The locking miniplate/screw system spreads the load over the plate and screws and diminishes the amount of force transfered to each unit.
机译:目的:本研究的目的是通过有限元分析评估用标准钛或锁定板/螺钉固定的矢状裂道裂隙截骨术(SSRO)后在骨骼和硬件上的机械应力。研究设计:建立了下颌骨的三维有限元模型,并在计算机模型上模拟了SSRO和5 mm的前进。用2.0毫米钛制常规微型板/螺钉或2.0毫米钛制锁定微型板/螺钉系统固定模型,并施加200 N斜向咬合力。结果:使用锁定板系统远端节段皮质层中的von Mises应力值较高。但是,在近端节段的皮质层中,常规钢板系统的应力较高。在两个节段的海绵层中,传统平板系统的应力较高。结论:锁紧微型板/螺钉系统将载荷分散在板上并拧紧螺钉,并减小了传递到每个单元的力。

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