首页> 外文期刊>Nagoya journal of medical science >MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE 'PINFIX' –
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MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE 'PINFIX' –

机译:基于桁架结构的骨折固定系统的机械优势–一种新型的骨折固定装置“ PINFIX” –

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摘要

A small, light, ball-joint device called PinFix, which can instantly convert a simple percutaneous cross pin fracture fixation system into a rigid external fracture fixation system based on truss structure, was developed. The purpose of this study was to compare the mechanical load and breaking strength of this truss-structure-based fixation system to that of the conventionally used external cantilever structure-based fixation system. Three types of mechanical loading tests, axial, bending, and torsion, were performed on an artificial fractured bone treated with either three-dimensional PinFix fixation, two-dimensional PinFix fixation, or conventional external fixation. The three- and two-dimensional PinFix fixations showed significantly more stiffness than conventional fixation on all three loading tests. Finite element analysis was next performed to calculate the stress distribution of the parts in PinFix and in the conventional fixator. The applied stress to the rod and connectors of PinFix was much less than that of the conventional external fixator. These results reflected the physical characteristic of truss structure in which applied load is converted to pure tension or compression forces along the members of the PinFix. In conclusion, PinFix is a simple fracture fixation system that has a truss-structure with a high rigidity.
机译:开发了一种名为PinFix的小型轻巧球形接头装置,该装置可以立即将简单的经皮十字钉骨折固定系统转换为基于桁架结构的刚性外部骨折固定系统。这项研究的目的是将这种基于桁架结构的固定系统的机械载荷和断裂强度与常规使用的基于外部悬臂结构的固定系统进行比较。对用三维PinFix固定,二维PinFix固定或常规外固定治疗的人工骨折骨进行了三种类型的机械载荷测试,即轴向,弯曲和扭转。在所有三个载荷测试中,三维和二维PinFix固定件都显示出比传统固定件明显更高的刚度。接下来进行有限元分析,以计算PinFix和常规固定器中零件的应力分布。对PinFix的杆和连接器的应力要比传统的外部固定器小得多。这些结果反映了桁架结构的物理特性,其中所施加的载荷沿着PinFix的成员转换为纯拉伸力或压缩力。总之,PinFix是一种简单的骨折固定系统,具有高刚度的桁架结构。

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