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下颌平面角对骨折线稳定性的影响:一项离体实验研究。

The effect of the mandibular plane angle on fracture line stability: An ex vivo experimental study.

机构信息

Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Istanbul University, Istanbul, Turkey.

出版信息

Dent Traumatol. 2019 Jun;35(3):181-187. doi: 10.1111/edt.12465. Epub 2019 Mar 6.

Abstract

BACKGROUND/AIMS: Mandibular angle fractures fixated with plate osteosynthesis techniques have to withstand the effects of muscle attachments. Individual variations in the craniofacial morphology may alter the biomechanical resistance of the bone-plate construct. The aim of the present study was to determine the influence of variations in the mandibular plane angle (MPa) on the biomechanical stability of sheep mandibular angle fractures (MAFs).

MATERIALS AND METHODS

Sixty sheep hemi-mandibles were used. The mandibles were positioned on a test jig that simulated low (15°, group L), normal (25°, group N), and high (35°, group H) MPa. Unfavorable MAFs were created with thin diamond cutting disks. One four-hole, 9.0-mm-spacing, standard titanium miniplate of 2.0 mm thickness and 5.0-mm-long screws were inserted at the superior border of the alveolar bone in monoplanar orientation. Specimens were then subjected to vertical loads between 10 N and 150 N in a universal testing machine. The displacement values at each 10 N force increment and the load magnitude at which 3.0 mm displacement limit was reached were recorded.

RESULTS

Starting from 40 N, the displacement values at each 10 N increment in the H group were significantly higher than those of the L and N groups until 150 N (P < 0.05). The force magnitude required to reach 3.0 mm of displacement in the H group was significantly lower than that for the L and N groups (P < 0.05 for each).

CONCLUSIONS

The one-miniplate monoplanar fixation technique used in sheep MAF with high MPa is more likely to offer lower biomechanical resistance to the vertical forces applied over the molar region than do the normal and low MPa.

摘要

背景/目的:采用钢板内固定技术固定下颌角骨折时,必须承受肌肉附着的影响。颅面形态的个体差异可能会改变骨-钢板结构的生物力学阻力。本研究的目的是确定下颌平面角(MPa)的变化对绵羊下颌角骨折(MAF)生物力学稳定性的影响。

材料和方法

使用 60 个绵羊半下颌骨。下颌骨放置在一个测试夹具上,模拟低(15°,组 L)、正常(25°,组 N)和高(35°,组 H)MPa。使用薄金刚石切割盘创建不利的 MAF。一个四孔、9.0mm 间距、标准钛 miniplate,厚度为 2.0mm,长 5.0mm 的螺钉以单平面方向插入牙槽骨的上缘。然后将标本在万能试验机上施加 10N 至 150N 的垂直载荷。记录每个 10N 力增量的位移值和达到 3.0mm 位移限制的载荷大小。

结果

从 40N 开始,H 组每个 10N 增量的位移值明显高于 L 和 N 组,直到 150N(P<0.05)。达到 3.0mm 位移所需的力大小在 H 组明显低于 L 和 N 组(每组 P<0.05)。

结论

在具有高 MPa 的绵羊 MAF 中使用的单 miniplate 单平面固定技术在磨牙区受到垂直力时更有可能提供较低的生物力学阻力,而不是正常和低 MPa。

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