首页> 外文会议>5th Kuala Lumpur international conference on biomedical engineering 2011 >How to Predict the Fractures Initiation Locus in Human Vertebrae Using Quantitative Computed Tomography(QCT) Based Finite Flement Method?
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How to Predict the Fractures Initiation Locus in Human Vertebrae Using Quantitative Computed Tomography(QCT) Based Finite Flement Method?

机译:如何基于定量计算机断层扫描(QCT)有限元法预测人椎骨的骨折起始位点?

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The aim of this study was to present an effective specimen-specific approach for predicting failure initiation load and location in cadaveric vertebrae. Nine thoraco-lumbar vertebrae excised from three cadavers were used as the samples in this study. The samples were then scanned using the QCT and their sectional images were segmentated and converted into 3D voxel based finite element models. Then, a large deformation nonlinear analysis was carried out. The equivalent plastic strain was then obtained and used to predict the load and locations of the failure initiation in each vertebra. Subsequently, all the samples were tested under the uniaxial compression condition and their experimental load displacement diagrams were also obtained. Results showed that in the samples, the failure is initiated and occurred at the loads below the ultimate strength of the samples. The radiographic images showed that the failure initiation happens in the same portion of the vertebral bodies as predicted by the QCT voxel based FEM. The method developed and verified in this study can be regarded as a valuable tool for predicting vertebral failure load.
机译:这项研究的目的是提出一种有效的特定于标本的方法,以预测尸体椎骨的破坏起始载荷和位置。从三个尸体中切出的九个胸腰椎被用作本研究的样本。然后使用QCT扫描样品,并将其截面图像分割并转换为基于3D体素的有限元模型。然后,进行了大变形非线性分析。然后获得等效的塑性应变,并将其用于预测每个椎骨中的载荷和失效起始位置。随后,所有样品均在单轴压缩条件下进行测试,并获得了它们的实验载荷位移图。结果表明,在样品中,破坏是在低于样品极限强度的载荷下引发并发生的。放射线图像显示,如基于QCT体素的FEM所预测的那样,失效起始发生在椎体的相同部分。在这项研究中开发和验证的方法可以被认为是预测椎体衰竭负荷的有价值的工具。

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