首页> 外文期刊>Clinical biomechanics >Mechanical performance of hybrid Ilizarov external fixator in comparison with Ilizarov circular external fixator.
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Mechanical performance of hybrid Ilizarov external fixator in comparison with Ilizarov circular external fixator.

机译:混合型Ilizarov外固定器与Ilizarov圆形外固定器的机械性能。

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Objective. The aim of this study was to determine the stiffness characteristics of the standard and hybrid Ilizarov fixators.Design. Five different frame models (one standard and four hybrid Ilizarov) were designed. Four full rings were used in the standard Ilizarov frame. Two rings were placed proximal and two rings were placed distal to the osteotomy line with two wires at 90 degrees to each other on each ring. The distal tibial fixation of all the hybrid configurations and standard Ilizarov fixator were the same, and only the proximal fixations were different. In hybrid models, different numbers of 90 degrees femoral arches (1-3) were fixed to the proximal segment by using the half-pins with different numbers (2-4) and different angles to each other (45 degrees and 90 degrees ).Background. Numerous investigations have been performed to compare the mechanical properties of different frames. The Ilizarov method of fracture fixation and limb lengthening has recently gained international recognition. But its application is difficult in some anatomic localization, so that hybrid ring fixation frames of various configurations are gaining clinical popularity.Methods. Five different frame models were applied to the sheep tibial bones. The midpoint of the tibial bones was osteotomised and the osteotomy distracted for 2 cm. Four identical samples for each model were created and each identical sample of each model (n=1) were tested four times in axial compression, antero-posterior and medio-lateral bending, and torsion.Results. In standard Ilizarov fixator, axial and bending stiffness was found to be more than all hybrid Ilizarov fixator models. Between the hybrid fixators, higher axial and bending stiffness was found when the number of femoral arches and half-pins were increased. Different angles between the half-pins formed 67% alteration in medio-lateral bending stiffness. No significant difference was found for torsional stiffness between the fixator models.Conclusions. For optimum fixator stiffness in hybrid fixators, at least three femoral arches and four half-pins must be used and these half-pins should be placed at 90 degrees angles and at different planes to each other. However, it should be remembered that, hybrid fixator models had less axial and bending stiffness than standard Ilizarov fixator model.RelevanceFor optimum fixator stiffness in hybrid fixators, at least three femoral arches and four half-pins must be used. However, it should be remembered that, hybrid fixator models had less axial and bending stiffness than standard Ilizarov fixator model.
机译:目的。这项研究的目的是确定标准和混合Ilizarov固定器的刚度特性。设计了五种不同的车架模型(一个标准和四个混合Ilizarov)。在标准Ilizarov框架中使用了四个完整的环。将两个环放置在截骨线的近端,将两个环放置在截骨线的远端,每个环上的两条线彼此成90度角。所有混合配置和标准Ilizarov固定器的胫骨远端固定均相同,只有近端固定不同。在混合模型中,通过使用具有不同数量(2-4)和彼此不同角度(45度和90度)的半销将不同数量的90度股弓(1-3)固定到近端节段。背景。为了比较不同框架的机械性能,已经进行了大量研究。 Ilizarov骨折固定和四肢加长方法最近获得了国际认可。但是它的应用在某些解剖学定位上是困难的,因此各种构型的混合环固定架在临床上越来越受欢迎。将五种不同的框架模型应用于绵羊胫骨。对胫骨的中点进行截骨术,截骨术分散2厘米。为每个模型创建了四个相同的样本,并对每个模型(n = 1)的每个相同样本进行了四次轴向压缩,前后弯曲和中外侧弯曲以及扭转测试。在标准Ilizarov固定器中,发现轴向和弯曲刚度比所有混合Ilizarov固定器模型都更高。在混合固定器之间,当增加股弓和半针的数量时,会发现较高的轴向和弯曲刚度。半销之间的不同角度形成了中外侧弯曲刚度的67%变化。固定器模型之间的扭转刚度没有显着差异。为了在混合固定器中获得最佳的固定器刚度,必须至少使用三个股骨弓和四个半销,并且这些半销应以90度角放置并且彼此处于不同的平面。但是,应该记住,混合固定器模型的轴向和弯曲刚度要比标准Ilizarov固定器模型小。相关性为了在混合固定器中获得最佳固定器刚度,必须至少使用三个股骨弓和四个半销。但是,应该记住,混合固定器模型的轴向和弯曲刚度比标准Ilizarov固定器模型小。

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