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In vitro study of a modified sagittal split osteotomy fixation technique of the mandible: a mechanical test

机译:颌骨改性矢状分裂截骨术固定技术的体外研究:机械试验

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摘要

This study was performed to evaluate the compressive mechanical strength of rigid internal fixation (RIF) using 1.5-mm L-shaped plates fixed with monocortical screws in sagittal split osteotomy (SSO). Thirty synthetic hemimandibles, which had all undergone a 5-mm advancement, were divided into three groups: three 12-mm bicortical titanium screws were placed in an inverted L pattern in group A; one straight 2.0-mm system spaced titanium plate fixed with four 5-mm monocortical screws was used in group B; two 1.5-mm system L-shaped titanium plates, each fixed with four 5-mm monocortical screws, were used in group C. The models were subjected to compressive and progressive mechanical tests with forces applied in the area between the second premolar and first molar to verify resistance in Newtons (N). A displacement speed of 1mm/min was applied, with a maximum 10mm displacement of the distal segment or until disruption of the fixation. The deformity and/or eventual rupture of the plates were evaluated, and consequently their technical stability was determined. The results showed that the modified fixation technique tested in this study on synthetic mandibles resulted in adequate stability and superior mechanical behaviour compared to simulated osteosynthesis with the use of a straight 2.0-mm titanium plate.
机译:进行该研究以评估使用1.5毫米L形板的刚性内固定(RIF)的压缩机械强度,该板在矢状分裂截骨术(SSO)中用单根螺钉固定。所有经过5毫米提升的30个合成的半温纤维分为三组:三个12毫米双色螺旋螺钉置于A组中的倒L模式;一组直线2.0毫米系统间隔开钛板,采用四种5毫米单切螺钉固定在B组;两种1.5毫米系统的L形钛板,每个钛板用四种5毫米单切螺钉使用,在C组中使用。模型经受施加在第二磨牙和第一磨牙的区域中的力量的压缩和渐进式机械测试验证牛顿(n)的阻力。施加1mm / min的位移速度,最大10mm位移到远端区段或直到固定的破坏。评估板的畸形和/或最终破裂,因此确定了它们的技术稳定性。结果表明,在该研究中测试的修饰固定技术与使用直的2.0mm钛板相比,与模拟的骨合成相比,与模拟的骨合成相比,在该研究中测试了足够的稳定性和优异的机械行为。

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