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首页> 外文期刊>Journal of mechanics in medicine and biology >COMPARATIVE EVALUATION OF THE MECHANICAL PROPERTIES OF RESORBABLE AND TITANIUM MINIPLATES USED FOR FIXATION OF MANDIBULAR CONDYLE FRACTURES
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COMPARATIVE EVALUATION OF THE MECHANICAL PROPERTIES OF RESORBABLE AND TITANIUM MINIPLATES USED FOR FIXATION OF MANDIBULAR CONDYLE FRACTURES

机译:用于修复下颌CON骨骨折的可修复和钛合金的力学性能的比较评估

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摘要

In this paper, comparative evaluation of the mechanical properties of resorbable and titanium miniplates, which are used for the fixation of the mandibular condyle fractures, was carried out using finite element analysis (FEA). To do so, first two-dimensional (2D) computed tomography (CT) images of mandibles recorded from 10 adult patients were converted into three-dimensional (3D) solid body models. Then these models were transferred to the finite element software. In the finite element stage of the study, a condyle fracture was created onto the mandible and double-titanium and double-resorbable miniplates were separately fixed to the mandible surface such that the fractured sites to be firmly attached. Stress distribution over the plates and interfragmentary displacements between adjacent surfaces, which stem from the clenching force applying to the mandible, were calculated using FEA. It was observed from the results that maximum tensile stresses occurred in the titanium miniplates were significantly higher than those obtained from resorbable miniplates (p < 0.01). Higher maximum displacements between fractured surfaces were observed in the case of resorbable plate systems (p < 0.01). Maximum stress and displacement values obtained from both titanium and resorbable plate systems were under clinically acceptable limits. According to results, resorbable plates showed a similar reliability with titanium miniplates in terms of withstanding various stress and strain deformations.
机译:在本文中,使用有限元分析(FEA)对用于固定下颌con突骨折的可吸收和钛金属迷你板的力学性能进行了比较评估。为此,将从10位成年患者记录的下颌骨的第一个二维(2D)计算机断层扫描(CT)图像转换为三维(3D)实体模型。然后将这些模型转移到有限元软件中。在研究的有限元阶段,在下颌骨上形成a突骨折,并将双钛和双吸收性小板分别固定在下颌骨表面,以使骨折部位​​牢固地固定。使用有限元分析法(FEA)计算出了在板上的应力分布以及相邻表面之间的碎片间位移,这些位移源自施加在下颌骨上的咬合力。从结果可以看出,在钛小板中产生的最大拉伸应力明显高于从可吸收小板获得的最大拉应力(p <0.01)。在可吸收板系统的情况下,观察到断裂表面之间的最大位移更高(p <0.01)。从钛和可吸收平板系统获得的最大应力和位移值均在临床可接受的范围内。根据结果​​,在承受各种应力和应变变形方面,可吸收板显示出与微型钛板相似的可靠性。

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