首页> 外文期刊>Journal of orthopaedic research >The use of X-shaped cross-link in posterior spinal constructs improves stability in thoracolumbar burst fracture: A finite element analysis
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The use of X-shaped cross-link in posterior spinal constructs improves stability in thoracolumbar burst fracture: A finite element analysis

机译:在脊柱后部结构中使用X形交联可提高胸腰椎爆裂骨折的稳定性:有限元分析

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摘要

Posterior instrumentation is a common fixation method used to treat thoracolumbar burst fractures. However, the role of different cross-link configurations in improving fixation stability in these fractures has not been established. A 3D finite element model of T11-L3 was used to investigate the biomechanical behavior of short (2 level) and long (4 level) segmental spine pedicle screw fixation with various cross-links to treat a hypothetical L1 vertebra burst fracture. Three types of cross-link configurations with an applied moment of 7.5 Nm and 200 N axial force were evaluated. The long construct was stiffer than the short construct irrespective of whether the cross-links were used (p < 0.05). The short constructs showed no significant differences between the cross-link configurations. The XL cross-link provided the highest stiffness and was 14.9% stiffer than the one without a cross-link. The long construct resulted in reduced stress to the adjacent vertebral bodies and screw necks, with 66.7% reduction in bending stress on L2 when the XL cross-link was used. Thus, the stability for L1 burst fracture fixation was best achieved by using long segmental posterior instrumentation constructs and an XL cross-link configuration. Cross-links did not improved stability when a short structure was used.
机译:后器械是用于治疗胸腰椎爆裂骨折的常用固定方法。但是,尚未确定不同的交联构型在改善这些骨折的固定稳定性方面的作用。 T11-L3的3D有限元模型用于研究短节段(2级)和长节段(4级)分段椎弓根螺钉固定和各种交联的生物力学行为,以治疗假想的L1椎骨爆裂骨折。对三种类型的交联构型进行了评估,施加力矩为7.5 Nm,轴向力为200N。无论是否使用交联,长结构比短结构都更硬(p <0.05)。短结构显示交联构型之间没有显着差异。 XL交联剂具有最高的刚度,比没有交联剂的刚度高14.9%。使用XL交联键时,长的结构可减少对相邻椎体和螺钉颈的应力,使L2上的弯曲应力降低66.7%。因此,通过使用长节段后路器械结构和XL交联构型,可以最佳地实现L1爆裂骨折固定的稳定性。当使用短结构时,交联不能改善稳定性。

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