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十种不同髁突基底骨折骨固定技术的比较评估

Comparative evaluation of ten different condylar base fracture osteosynthesis techniques.

作者信息

Pilling Eckart, Eckelt Uwe, Loukota Richard, Schneider Konrad, Stadlinger Bernd

机构信息

Marcolini Praxisklinik, Bautzner Str. 96, 01099 Dresden, Germany.

出版信息

Br J Oral Maxillofac Surg. 2010 Oct;48(7):527-31. doi: 10.1016/j.bjoms.2009.09.010. Epub 2009 Oct 23.

Abstract

The aim of this study on the mandibles of minipigs was to compare the biomechanical stability of different methods of osteosynthesis that are used in the operative treatment of fractures of the base of the condyle. Ten different systems of osteosynthesis were used to fix 164 fractures, which were tested by a two-point bending test after repositioning and fixing. This stress test was applied in four directions: lateral to medial, anterior to distal, distal to anterior, and medial to lateral. The Eckelt lag screw, one or two 2.0mm miniplates, one miniplate with bar (KLS Martin), minicompression plates (Medicon), zygoma compression plates (Medartis), condylus fracture plates (Medartis), square 4-hole plates (KLS Martin), and either one or two resorbable 4-hole miniplates (Resorb-X, Martin) were used for osteosynthesis. A total of 164 tests were done using a universal test machine that measured forces until the osteosynthesis failed. Advantages in mechanical load capacity were also measured for the Eckelt lag screw when force was applied from medial to lateral. Fixation with one resorbable miniplate was not functionally stable. Irrespective of the direction of force applied, two miniplates were the most stable technique. There were pronounced differences depending on the direction of force applied. The results suggest that treatment with a single resorbable miniplate is not functionally stable.

摘要

本研究以小型猪的下颌骨为对象,旨在比较髁突基部骨折手术治疗中不同接骨方法的生物力学稳定性。使用10种不同的接骨系统固定164处骨折,复位固定后通过两点弯曲试验进行测试。该应力试验在四个方向施加:外侧至内侧、前侧至远端、远端至前侧以及内侧至外侧。使用了埃克尔特拉力螺钉、一个或两个2.0毫米微型钢板、带杆微型钢板(KLS Martin)、微型加压钢板(Medicon)、颧骨加压钢板(Medartis)、髁突骨折钢板(Medartis)、方形四孔钢板(KLS Martin)以及一个或两个可吸收四孔微型钢板(Resorb-X,Martin)进行接骨。使用万能试验机共进行了164次测试,测量直至接骨失败时的力。当从内侧向外侧施加力时,还测量了埃克尔特拉力螺钉在机械负载能力方面的优势。用一个可吸收微型钢板固定在功能上不稳定。无论施加力的方向如何,两个微型钢板是最稳定的技术。根据施加力的方向存在明显差异。结果表明,使用单个可吸收微型钢板治疗在功能上不稳定。

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