...
首页> 外文期刊>JOR spine. >Optimizing computational methods of modeling vertebroplasty in experimentally augmented human lumbar vertebrae
【24h】

Optimizing computational methods of modeling vertebroplasty in experimentally augmented human lumbar vertebrae

机译:实验增强人腰椎椎体成形术的优化计算方法

获取原文

摘要

Vertebroplasty has been widely used for the treatment of osteoporotic compression fractures but the efficacy of the technique has been questioned by the outcomes of randomized clinical trials. Finite‐element (FE) models allow an investigation into the structural and geometric variation that affect the response to augmentation. However, current specimen‐specific FE models are limited due to their poor reproduction of cement augmentation behavior. The aims of this study were to develop new methods of modeling the vertebral body in both a nonaugmented and augmented state. Experimental tests were conducted using human lumbar spine vertebral specimens. These tests included micro‐computed tomography imaging, mechanical testing, augmentation with cement, reimaging, and retesting. Specimen‐specific FE models of the vertebrae were made comparing different approaches to capturing the bone material properties and to modeling the cement augmentation region. These methods significantly improved the modeling accuracy of nonaugmented vertebrae. Methods that used the registration of multiple images (pre‐ and post‐augmentation) of a vertebra achieved good agreement between augmented models and their experimental counterparts in terms of predictions of stiffness. Such models allow for further investigation into how vertebral variation influences the mechanical outcomes of vertebroplasty.
机译:椎体成型术已被广泛用于治疗骨质疏松压缩骨折,但该技术的功效受到随机临床试验的结果受到质疑。有限元(FE)模型允许调查影响对增强响应的结构和几何变化。然而,由于它们的水泥增强行为的繁殖差,目前的特定于样本的FE模型受到限制。本研究的目的是在非悬垂和增强状态下开发新的椎体建模的方法。使用人腰椎椎体标本进行实验测试。这些测试包括微计算机断层扫描成像,机械测试,带有水泥,重叠和重新定位的增强。使椎骨的特异性Fe模型进行比较不同的方法,以捕获骨材料特性并建模水泥增强区域。这些方法显着提高了非可见椎骨的建模精度。在刚度预测方面,利用椎骨的多个图像的登记(预先增强)的登记(预先增强)的登记实现了良好的一致性和他们的实验对应。这些模型允许进一步调查椎体变异如何影响椎体成形术的机械成果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号