Okulski Jakub, Kozakiewicz Marcin, Krasowski Michał, Zieliński Rafał, Wach Tomasz
Department of Maxillofacial Surgery, Medical University of Lodz, 113 Żeromskiego Str., 90-549 Lodz, Poland.
Material Science Laboratory, Medical University of Lodz, 251 Pomorska Str., 92-213 Lodz, Poland.
J Clin Med. 2023 Oct 24;12(21):6705. doi: 10.3390/jcm12216705.
(1) Background: The mandible is the most frequently injured component of the facial skeleton, with 25-45% of mandibular fractures involving the condylar process. This study aims to mechanically compare which plates are most suitable for use in low-neck fractures of the condyle. (2) Methods: Polyurethane mandibular models with simulated low-neck fractures were tested using 37 distinct plate designs. These plates were fabricated from 1 mm thick, grade 23 titanium sheets. The models were then subjected to force tests on a strength machine, and the correlation between applied force and fracture displacement was recorded. (3) Results: For low-neck fractures, XCP side-dedicated 3+5 and ACP-T plates demonstrated strength comparable to that of two straight plates, the current gold standard in osteosynthesis. (4) Conclusions: The Mechanical Excellence Factor (MEF) introduced by the authors provides a more accurate metric for theoretically predicting a plate's mechanical strength compared to the Plate Design Factor (PDF). Eight plate characteristics were utilized to calculate the MEF. Employing the MEF allows for rapid, preliminary validation before undertaking strength tests. Furthermore, the findings of this study can guide the selection of the most durable plate designs for subsequent fatigue testing.
(1) 背景:下颌骨是面部骨骼中最常受伤的部位,25%至45%的下颌骨骨折累及髁突。本研究旨在从力学角度比较哪种钢板最适合用于髁突低颈部骨折。(2) 方法:使用37种不同的钢板设计对具有模拟低颈部骨折的聚氨酯下颌骨模型进行测试。这些钢板由1毫米厚的23级钛板制成。然后在强度试验机上对模型进行力测试,并记录施加力与骨折位移之间的相关性。(3) 结果:对于低颈部骨折,XCP侧专用3 + 5钢板和ACP - T钢板表现出与两种直形钢板相当的强度,而直形钢板是目前骨接合术中的金标准。(4) 结论:与钢板设计因子(PDF)相比,作者引入的力学卓越因子(MEF)为从理论上预测钢板的力学强度提供了更准确的指标。利用八个钢板特征来计算MEF。采用MEF可以在进行强度测试之前进行快速的初步验证。此外,本研究的结果可为后续疲劳测试选择最耐用的钢板设计提供指导。