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采用三维有限元分析模型对下颌高位矢状斜劈开截骨术不同固定方法的生物力学评估。

Biomechanical assessment of different fixation methods in mandibular high sagittal oblique osteotomy using a three-dimensional finite element analysis model.

机构信息

Department of Oral and Maxillofacial Surgery, Head and Neck Institute, University Hospital of Nice, 30 Avenue Valombrose, 06100, Nice, France.

Department of Computational Mechanics Physics CEMEF, MINES ParisTech, PSL Research University, Centre de Mise en Forme Des Matériaux (CEMEF), French National Centre for Scientific Research, Sophia Antipolis, France.

出版信息

Sci Rep. 2021 Apr 22;11(1):8755. doi: 10.1038/s41598-021-88332-2.

Abstract

With modern-day technical advances, high sagittal oblique osteotomy (HSOO) of the mandible was recently described as an alternative to bilateral sagittal split osteotomy for the correction of mandibular skeletal deformities. However, neither in vitro nor numerical biomechanical assessments have evaluated the performance of fixation methods in HSOO. The aim of this study was to compare the biomechanical characteristics and stress distribution in bone and osteosynthesis fixations when using different designs and placing configurations, in order to determine a favourable plating method. We established two finite element models of HSOO with advancement (T1) and set-back (T2) movements of the mandible. Six different configurations of fixation of the ramus, progressively loaded by a constant force, were assessed for each model. The von Mises stress distribution in fixations and in bone, and bony segment displacement, were analysed. The lowest mechanical stresses and minimal gradient of displacement between the proximal and distal bony segments were detected in the combined one-third anterior- and posterior-positioned double mini-plate T1 and T2 models. This suggests that the appropriate method to correct mandibular deformities in HSOO surgery is with use of double mini-plates positioned in the anterior one-third and posterior one-third between the bony segments of the ramus.

摘要

随着现代技术的进步,最近有人提出,下颌高位矢状斜行截骨术(HSOO)可作为双侧矢状劈开截骨术的替代方法,用于矫正下颌骨骨骼畸形。然而,无论是体外还是数值生物力学评估都没有评估过 HSOO 中固定方法的性能。本研究的目的是比较不同设计和放置方式下使用不同固定方式的生物力学特性和骨及内固定物的应力分布,以确定一种有利的固定方法。我们建立了两种带有下颌前伸(T1)和后退(T2)运动的 HSOO 有限元模型。对每个模型,都评估了 6 种不同的下颌支固定配置。分析了固定物和骨中的 von Mises 应力分布以及骨段的位移。在前 1/3 和后 1/3 联合使用双微型板的 T1 和 T2 模型中,固定物和骨中的机械应力最低,近端和远端骨段之间的位移梯度最小。这表明,在 HSOO 手术中矫正下颌畸形的合适方法是在前 1/3 和后 1/3 位置使用双微型板固定在下颌支的骨段之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f9c/8062482/ca2c1371f395/41598_2021_88332_Fig1_HTML.jpg

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