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Bone properties affect loosening of half-pin external fixators at the pin-bone interface

机译:骨骼特性会影响销钉-骨接口处半销钉外部固定器的松动

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Introduction: Local bone yielding at the pin-bone interface of external fixation half-pins has been known to initiate fixator loosening. Deterioration of bone properties due to ageing and disease can lead to an increase in the risk of pin loosening. This study determines the extent, locations and mechanics of bone yielding for unilateral external fixation systems at the tibial midshaft with changes in age-related bone structure and properties. The study also evaluates the effect of the number of pins used in the fixation system and use of titanium pins (in place of steel) on bone yielding. Methods: We employ nonlinear finite element (FE) simulations. Strain-based plasticity is used to simulate bone yielding within FE analyses. Our analyses also incorporate contact behaviour at pin-bone interfaces, orthotropic elasticity and periosteal-endosteal variation of bone properties. Results: The results show that peri-implant yielded bone volume increases by three times from young to old-aged cases. The use of three, rather than two half-pins (on either side of the fracture), reduces the volume of yielded bone by 80% in all age groups. The use of titanium half-pins resulted in approximately 60-65% greater volumes of yielded bone. Conclusions: We successfully simulate half-pin loosening at the bone-implant interface which has been found to occur clinically. Yielding across the full cortical thickness may explain the poor performance of these devices for old-aged cases. The models are able to identify patients particularly at risk of half-pin loosening, who may benefit from alternative fixator configurations or techniques such as those using pre-tensioned fine wires.
机译:简介:已知外固定半销的销-骨界面处的局部骨屈服会引起固定器松动。由于衰老和疾病而导致的骨质恶化可能导致销钉松动的风险增加。这项研究确定了随着年龄相关的骨骼结构和特性的变化,胫骨中轴单侧外固定系统的骨骼屈服程度,位置和力学。该研究还评估了固定系统中使用的销钉数量和钛销钉(代替钢)对骨屈服的影响。方法:我们采用非线性有限元(FE)仿真。基于应变的可塑性用于在有限元分析中模拟骨骼屈服。我们的分析还包括了在针骨界面处的接触行为,正交各向异性弹性和骨特性的骨膜-骨膜变化。结果:结果表明,从种植体到老年,种植体周围产生的骨量增加了三倍。在所有年龄组中,使用三个而不是两个半销钉(在骨折的任一侧)可使屈服的骨量减少80%。钛半销的使用导致产生的骨头体积增加大约60-65%。结论:我们成功地模拟了在临床上发现的在骨-植入物界面处的半针松动。在整个皮质厚度上屈服可能解释了这些装置在老年病例中的不良性能。该模型能够识别特别有半针松动风险的患者,这些患者可能会从替代的固定器配置或技术(例如使用预张紧的细线的技术)中受益。

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