Alkan Alper, Celebi Nükhet, Ozden Bora, Baş Burcu, Inal Samet
Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Erciyes University, Kayseri, Turkey.
Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2007 Dec;104(6):752-6. doi: 10.1016/j.tripleo.2007.03.014. Epub 2007 Jul 24.
The purpose of this study was to evaluate the biomechanical behaviors of different miniplate fixation techniques for treatment of fractures of the mandibular angle.
Twenty sheep hemimandibles were used to evaluate 4 different plating techniques. The groups were fixated with Champy technique, biplanar plate placement, monoplanar plate placement, and 3-dimensional (3D) curved angle strut plate. A custom-made 3-point biomechanical test model was used for the samples. Each group was tested with compression forces by an Instron Lloyd LRX machine. The biomechanical behavior of the groups for the forces (N) that caused displacement of 1.75 mm were compared using the Instron software program and displacement graphics.
The variance analyses showed that biplanar plate placement had more favorable biomechanical behavior than Champy technique and monoplanar plate placement (P < .05). In addition, the 3D curved angle strut plate technique had more favorable biomechanical behavior than the Champy technique (P < .05) but was not significantly different from biplanar or monoplanar plate placement techniques (P > .05).
The study demonstrated that 3D strut plates or dual miniplate techniques had greater resistance to compression loads than the Champy technique. In addition, biplanar plate orientation may provide a more favorable biomechanical behavior than monoplanar plate placement.
本研究旨在评估不同微型钢板固定技术治疗下颌角骨折的生物力学行为。
使用20个绵羊半下颌骨评估4种不同的钢板固定技术。这些组分别采用尚皮技术、双平面钢板放置、单平面钢板放置和三维(3D)弯角支撑钢板进行固定。为样本使用了定制的三点生物力学测试模型。每组通过英斯特朗劳埃德LRX机器施加压缩力进行测试。使用英斯特朗软件程序和位移图形比较各组在导致1.75毫米位移的力(N)作用下的生物力学行为。
方差分析表明,双平面钢板放置的生物力学行为比尚皮技术和单平面钢板放置更有利(P <.05)。此外,3D弯角支撑钢板技术的生物力学行为比尚皮技术更有利(P <.05),但与双平面或单平面钢板放置技术无显著差异(P >.05)。
该研究表明,3D支撑钢板或双微型钢板技术比尚皮技术对压缩载荷具有更大的抵抗力。此外,双平面钢板定向可能比单平面钢板放置提供更有利的生物力学行为。