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A FINITE ELEMENT COMPARISON BETWEEN TWO SIZES OF NiTi COMMERCIAL STAPLES USED IN SCAPHOID FRACTURE FIXATION

机译:用于舟骨骨折固定的两种尺寸的 NiTi 商业订书钉的有限元比较

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摘要

Most carpal bone fractures occur in the scaphoid. This work is aimed at finding the most suitable size of NiTi shape memory alloy (nitinol) staples to heal scaphoid fractures by comparing two commercially available compression staples (DynaClip? Bone Fixation System, 10x10 and 14x14 mm). In the present study the scaphoid bone was selected for simulating a model in SolidWorks software. To accurately investigate the effect of staple size on the bone the scaphoid was assumed to be a three-layer composite structure consisting of collagen and mineral crystals. The stress distributions along a path located at the waist of the scaphoid were assessed. The finite element analysis was carried out in ABAQUS software based on the nitinol staple shape memory effect and super-elasticity behavior. The results indicated that the smaller size of staples induced a more significant stress on the central zone of the scaphoid, whereas the larger size of staples showed a peak stress concentration on the peripheral zones with a reduced stress concentration at the center. Hence, it is suggested to utilize the two of these staples in different orientations or in parallel with each other to improve the biomechanical behavior of the regenerated bone.
机译:大多数腕骨骨折发生在舟骨。这项工作旨在通过比较两种市售的压缩钉(DynaClip?骨固定系统,10x10 和 14x14 毫米)。在本研究中,选择舟骨在SolidWorks软件中模拟模型。为了准确研究钉子大小对骨骼的影响,舟骨被假设为由胶原蛋白和矿物晶体组成的三层复合结构。评估了沿着位于舟骨腰部的路径的应力分布。在ABAQUS软件中,基于镍钛合金短纤形状记忆效应和超弹性行为进行了有限元分析。结果表明,较小尺寸的订书钉对舟骨中心区产生更显著的应力,而较大尺寸的订书钉在外围区域表现出峰值应力集中,中心应力集中降低。因此,建议以不同的方向或相互平行地利用这两种钉子来改善再生骨骼的生物力学行为。

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