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在下颌矢状劈开截骨术中使用哪种微型钢板?一项体外研究。

Which kind of miniplate to use in mandibular sagittal split osteotomy? An in vitro study.

机构信息

Department of Maxillofacial Surgery and Traumatology at University of Sagrado Coração, Bauru, SP, Brazil.

出版信息

Int J Oral Maxillofac Surg. 2012 Nov;41(11):1369-73. doi: 10.1016/j.ijom.2012.05.003. Epub 2012 May 31.

DOI:10.1016/j.ijom.2012.05.003
PMID:22658672
Abstract

This study verified the resistance to displacement of six miniplate fixation methods after sagittal split osteotomy (SSO). SSO was performed in 30 polyurethane synthetic mandible replicas. The distal segments were advanced (4 mm) and specimens were grouped according to the fixation method: four-hole standard miniplate; four-hole locking miniplate; six-hole standard miniplate; six-hole locking miniplate; six-hole standard sagittal miniplate; six-hole locking sagittal miniplate. Biomechanical evaluation was performed by applying compression loads to three points on the second molar region, using an Instron universal testing machine until a 3mm displacement of the segments occurred. Compression loads able to produce 3mm displacement were recorded in kN and subjected to analysis of variance (P<0.01) and Tukey's tests for comparison between groups (P<0.05). The locking sagittal miniplate showed higher resistance to displacement than the regular four- and six-hole locking and standard miniplates. No significant differences were observed between the locking sagittal miniplate and the regular sagittal or the four-hole locking miniplates. Two of the three groups with the best results had locking plate fixation methods. Fixation of SSO with a single miniplate is better accomplished using six-hole locking sagittal miniplates, six-hole standard sagittal miniplates, or four-hole locking miniplates; these methods are more resistant to displacement.

摘要

本研究验证了六种微型板固定方法在矢状劈开截骨术(SSO)后抵抗移位的能力。在 30 个聚亚安酯合成下颌模型中进行 SSO。将远端部分推进(4mm),并根据固定方法对标本进行分组:四孔标准微型板;四孔锁定微型板;六孔标准微型板;六孔锁定微型板;六孔标准矢状微型板;六孔锁定矢状微型板。通过在第二磨牙区域的三个点施加压缩载荷,使用 Instron 万能试验机对生物力学进行评估,直到节段发生 3mm 的位移。记录能够产生 3mm 位移的压缩载荷(kN),并进行方差分析(P<0.01)和 Tukey 检验,以比较组间差异(P<0.05)。锁定矢状微型板比常规的四孔和六孔锁定微型板和标准微型板具有更高的抗移位能力。锁定矢状微型板与常规矢状微型板或四孔锁定微型板之间没有观察到显著差异。三个最佳结果组中有两个采用了锁定板固定方法。使用六孔锁定矢状微型板、六孔标准矢状微型板或四孔锁定微型板进行 SSO 固定效果更好,它们更能抵抗移位。

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