Numerical Study of Mechanical Development of Patient-Specific Mandibular Reconstruction Implant

Reza Nourishirazi, M. Karimpour
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Abstract

Patient-specific mandibular reconstruction implants are a new technique to deal with ameloblastoma tumors. Although they could solve the integration problem which is attributed to the graft reconstruction approach, they may increase the risk of infection due to poor blood supply around it. Using bone grafts besides customized plates with smaller geometries would be considered as an alternative. However, they would also have possible complications like poor graft integration and plate fracture. Considering weight reduction patterns on implants would efficiently help to solve the mentioned problems. In this study, two design concepts of mandibular reconstruction implants which were different in weight reduction pattern’s location were presented. Also, a finite element assessment was performed to evaluate the mechanical performance and functionality of the implants under chewing load. Results revealed that designing patterns all over the implant geometry would lead to minimum jaw deviation and maximum Von Mises stress values around 120 MPa which is much less than Ti6Al4V yield stress. Compared to the solid design, the patterns would enhance the implant function by decreasing the deviation which would result in a function similar to the intact side. Although results showed the proper functionality of the implant clinical trials with multiyear follow-ups are still needed to investigate the detailed clinical results of this concept.
患者专用下颌骨修复植入体力学发展的数值研究
患者特异性下颌骨重建植入物是一种治疗釉母细胞瘤的新技术。虽然它们可以解决移植重建方法所带来的整合问题,但由于周围血液供应不足,可能会增加感染风险。除了使用具有较小几何形状的定制骨板外,还可以考虑使用骨移植作为替代方法。不过,这种方法也可能出现移植骨整合不良和骨板断裂等并发症。考虑植入物的减重模式将有效地帮助解决上述问题。本研究提出了两种下颌骨重建种植体的设计理念,它们在减重模式的位置上有所不同。此外,还进行了有限元评估,以评价种植体在咀嚼负荷下的机械性能和功能。结果表明,在种植体的几何形状上设计各种图案可使下颌偏差最小,最大 Von Mises 应力值约为 120 兆帕,远小于 Ti6Al4V 的屈服应力。与实体设计相比,图案可以通过减少偏差来增强种植体的功能,从而实现与完整侧相似的功能。尽管结果表明种植体具有良好的功能,但仍需要进行多年的临床试验,以研究这一概念的详细临床效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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