Department of Oral and Maxillofacial Surgery, Ordu University, Ordu, Turkey.
Department of Oral and Maxillofacial Surgery, Ordu University, Ordu, Turkey.
J Stomatol Oral Maxillofac Surg. 2022 Nov;123(6):610-615. doi: 10.1016/j.jormas.2022.05.008. Epub 2022 May 8.
The purpose of this study is to explore the effectiveness of Cfr-PEEK, in the fixation of unfavorable fractures of mandibular angulus by comparing it with the titanium and resorbable biomaterials. 8 different fixation models were created. In the first 4 groups, a single mini plate was applied to the upper edge of the fracture line by the Champy method. In the other 4 groups, an additional plate was placed on the lower edge of the fracture line. In these models, titanium, resorbable and Cfr-PEEK plate/screw systems were investigated by the finite element analysis method. The highest Von Mises stress was observed on the upper plate in the group 5 while the lowest was seen in the lower plate in the group 7. The highest stress values on the screws were observed on the screws placed closer to the fracture line. Considering the stresses on the bone around the screws, the highest Pmax and Pmin values were seen in group 5, and the lowest values were seen in the group 7. The highest displacement was observed in the group 3, while the lowest was observed in the group 5. According to the results it can be said that Cfr-PEEK plate/screw systems may provide advantages by decreasing the stresses on the fixation systems over the titanium plates and providing more stable fixation over the resorbable systems. Cfr-PEEK plates of 2 mm thickness seems to be a potential alternative to 1 mm thick titanium plates.
本研究旨在通过与钛和可吸收生物材料相比,探讨 Cfr-PEEK 在固定下颌角不利骨折中的效果。共建立了 8 种不同的固定模型。在前 4 组中,采用 Champy 法在上缘骨折线上应用单一微型板。在后 4 组中,在下缘骨折线上额外放置了一块板。在这些模型中,通过有限元分析方法研究了钛、可吸收和 Cfr-PEEK 板/螺钉系统。第 5 组的上板上观察到最高的 Von Mises 应力,而第 7 组的下板上观察到最低的应力。靠近骨折线放置的螺钉上观察到的最大螺钉应力值。考虑到螺钉周围骨骼上的应力,第 5 组观察到的 Pmax 和 Pmin 值最高,第 7 组观察到的最低值。第 3 组观察到的最大位移,而第 5 组观察到的最小位移。根据结果可以说,Cfr-PEEK 板/螺钉系统通过降低固定系统上的应力,相对于钛板提供更稳定的固定,相对于可吸收系统提供优势。2mm 厚的 Cfr-PEEK 板似乎是 1mm 厚钛板的潜在替代品。