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A COMPARATIVE FINITE ELEMENT STUDY OF CONDYLAR FIXATION:PRELIMINARY RESULTS

机译:DY固定的比较有限元研究: r n初步结果

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The basis for fixation of condylar fractures is strongly determined by surgical decision using available technology. Recent developments of technology include the retrograde distal femoral nail (DFN), with condylar "bolts" (T2 SCN), and along with the dynamic condylar screw (DCS) and various combinations of additional screws and wire, these devices form the primary elements available for fracture fixation. This paper looks at the relative structural performance of these constructs under the action of an idealised loading condition - axial load through the femoral head in line with the mechanical (c.f. anatomical) axis of the femur. The finite element method is used. The geometric models have been created using available published information, and meshing generated using tetrahedral elements. Some reasonable assumptions about the properties of cortical and cancellous bone have been made. The effect of good quality and poor quality cancellous bone has been considered.rnThe results show the displacements of each device and some of the key stressed regions using each construct principle. The use of condylar bolts produces significant levels of stress within the bone before any patient-load is applied, but provides a stiffer construct for subsequent loading.rnSurgeons will make their own decisions about the appropriate construct for each patient, but this evaluation is intended to help with that decision making.
机译:available突骨折的固定基础在很大程度上取决于使用现有技术的手术决策。技术的最新发展包括具有distal突“螺栓”(T2 SCN)的股骨远端逆行钉(DFN),动态con骨螺钉(DCS)以及附加螺钉和钢丝的各种组合,这些装置构成了可用的主要元件用于骨折固定。本文着眼于理想载荷条件下这些结构的相对结构性能-通过股骨头的轴向载荷与股骨的力学(解剖学)轴线一致。使用了有限元法。使用可用的已发布信息创建了几何模型,并使用四面体元素生成了网格。关于皮质和松质骨的性质已经做出了一些合理的假设。已经考虑了高质量和劣质松质骨的效果。结果表明,使用每种构造原理,每个器械的位移以及一些关键的应力区域。 dy骨螺栓的使用会在施加任何患者负荷之前在骨骼内产生显着水平的应力,但会为以后的负荷提供更坚固的结构。外科医生会针对每个患者自行决定合适的结构,但是本评估旨在帮助做出决策。

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