Paediatric Spine Research Group, Queensland University of Technology, GPO Box 2434, Brisbane, QLD 4001, Australia.
Med Biol Eng Comput. 2012 Feb;50(2):199-209. doi: 10.1007/s11517-011-0848-6. Epub 2011 Dec 25.
Current complication rates for adolescent scoliosis surgery necessitate the development of better surgical planning tools to improve outcomes. Here we present our approach to developing finite element models of the thoracolumbar spine for deformity surgery simulation, with patient-specific model anatomy based on low-dose pre-operative computed tomography scans. In a first step towards defining patient-specific tissue properties, an initial 'benchmark' set of properties were used to simulate a clinically performed pre-operative spinal flexibility assessment, the fulcrum bending radiograph. Clinical data for ten patients were compared with the simulated results for this assessment and in cases where these data differed by more than 10%, soft tissue properties for the costo-vertebral joint (CVJt) were altered to achieve better agreement. Results from these analyses showed that changing the CVJt stiffness resulted in acceptable agreement between clinical and simulated flexibility in two of the six cases. In light of these results and those of our previous studies in this area, it is suggested that spinal flexibility in the fulcrum bending test is not governed by any single soft tissue structure acting in isolation. More detailed biomechanical characterisation of the fulcrum bending test is required to provide better data for determination of patient-specific soft tissue properties.
目前青少年脊柱侧凸手术的并发症发生率需要开发更好的手术规划工具来改善治疗效果。在这里,我们介绍了一种用于脊柱畸形手术模拟的胸腰椎有限元模型的开发方法,该模型基于低剂量术前计算机断层扫描(CT)扫描来建立患者特定的解剖结构。为了定义患者特定的组织特性,我们首先使用一组初始的“基准”属性来模拟临床中进行的术前脊柱柔韧性评估——枢轴弯曲位片。我们将 10 名患者的临床数据与该评估的模拟结果进行了比较,在这些数据差异超过 10%的情况下,我们会改变肋椎关节(CVJt)的软组织特性以达到更好的一致性。这些分析的结果表明,在 6 例中的 2 例中,改变 CVJt 的刚度可以使临床和模拟的柔韧性之间达到可接受的一致性。鉴于这些结果以及我们在该领域的先前研究结果,提示枢轴弯曲试验中的脊柱柔韧性不受任何单一的软组织结构的影响。需要更详细的枢轴弯曲试验的生物力学特征描述,以提供更好的用于确定患者特定软组织特性的数据。
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