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A Biomechanical Comparison of Three 1.5-mm Plate and Screw Configurations and a Single 2.0-mm Plate for Internal Fixation of a Mandibular Condylar Fracture

机译:三种1.5毫米钢板和螺钉配置以及单个2.0毫米钢板用于下颌Con突骨折内部固定的生物力学比较

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摘要

The most stable pattern of internal fixation for mandibular condyle fractures is an area of ongoing discussion. This study investigates the stability of three patterns of plate fixation using readily available, commercially pure titanium implants. Finite element models of a simulated mandibular condyle fracture were constructed. The completed models were heterogeneous in bone material properties, contained approximately 1.2 million elements and incorporated simulated jaw adducting musculature. Models were run assuming linear elasticity and isotropic material properties for bone. No human subjects were involved in this investigation. The stability of the simulated condylar fracture reduced with the different implant configurations, and the von Mises stresses of a 1.5-mm X-shaped plate, a 1.5-mm rectangular plate, and a 1.5-mm square plate (all Synthes (Synthes GmbH, Zuchwil, Switzerland) were compared. The 1.5-mm X plate was the most stable of the three 1.5-mm profile plate configurations examined and had comparable mechanical performance to a single 2.0-mm straight four-hole plate. This study does not support the use of rectangular or square plate patterns in the open reduction and internal fixation of mandibular condyle fractures. It does provide some support for the use of a 1.5-mm X plate to reduce condylar fractures in selected clinical cases.
机译:下颌con突骨折最稳定的内固定方式是持续讨论的领域。这项研究调查了使用容易获得的市售纯钛植入物的三种板固定方式的稳定性。建立了模拟下颌con突骨折的有限元模型。完整的模型在骨骼材料属性上是异质的,包含约120万个元素,并包含模拟的颌骨内收肌组织。运行模型时假设骨骼具有线性弹性和各向同性的材料特性。没有人类受试者参与这项调查。不同的植入物配置会降低模拟implant突骨折的稳定性,并且1.5毫米X形板,1.5毫米矩形板和1.5毫米方形板的von Mises应力(所有Synthes(Synthes GmbH,比较了1.5毫米X平板,这是所研究的三种1.5毫米轮廓板中最稳定的,其机械性能与单个2.0毫米直四孔板相当。在下颌con突骨折的切开复位和内固定中使用矩形或正方形钢板样板,在某些临床病例中确实为使用1.5 mm X钢板减少reduce突骨折提供了一定的支持。

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