...
首页> 外文期刊>Biomechanics and modeling in mechanobiology >Activity intensity, assistive devices and joint replacement influence predicted remodelling in the proximal femur
【24h】

Activity intensity, assistive devices and joint replacement influence predicted remodelling in the proximal femur

机译:活动强度,辅助装置和关节置换影响股骨近端预测的重塑

获取原文
获取原文并翻译 | 示例

摘要

Bone morphology and density changes are commonly observed following joint replacement, may contribute to the risks of implant loosening and periprosthetic fracture and reduce the available bone stock for revision surgery. This study was presented in the 'Bone and Cartilage Mechanobiology across the scales' WCCM symposium to review the development of remodelling prediction methods and to demonstrate simulation of adaptive bone remodelling around hip replacement femoral components, incorporating intrinsic (prosthesis) and extrinsic (activity and loading) factors. An iterative bone remodelling process was applied to finite element models of a femur implanted with a cementless total hip replacement (THR) and a hip resurfacing implant. Previously developed for a cemented THR implant, this modified process enabled the influence of pre- to post-operative changes in patient activity and joint loading to be evaluated. A control algorithm used identical pre- and post-operative conditions, and the predicted extents and temporal trends of remodelling were measured by generating virtual X-rays and DXA scans. The modified process improved qualitative and quantitative remodelling predictions for both the cementless THR and resurfacing implants, but demonstrated the sensitivity to DXA scan region definition and appropriate implant-bone position and sizing. Predicted remodelling in the intact femur in response to changed activity and loading demonstrated that in this simplified model, although the influence of the extrinsic effects were important, the mechanics of implantation were dominant. This study supports the application of predictive bone remodelling as one element in the range of physical and computational studies, which should be conducted in the preclinical evaluation of new prostheses.
机译:关节置换后通常会观察到骨形态和密度变化,可能会导致植入物松动和假体周围骨折的风险,并减少翻修手术的可用骨量。这项研究在WCCM研讨会的“骨和软骨力学生物学”研讨会上进行了介绍,以回顾重塑预测方法的发展并演示髋关节置换股骨组件周围的适应性骨重塑的模拟,其中结合了内在的(假体)和外在的(活动和负重) )因素。将迭代骨重塑过程应用于植入了非骨水泥全髋关节置换术(THR)和髋关节表面置换植入物的股骨的有限元模型。以前针对胶结的THR植入物而开发,这种修改过的过程可以评估术前到术后对患者活动和关节负荷的影响。控制算法使用相同的术前和术后条件,并且通过生成虚拟X射线和DXA扫描来测量重塑的预测程度和时间趋势。修改后的过程改善了非骨水泥THR和表面重修植入物的定性和定量重塑预测,但证明了对DXA扫描区域定义以及适当的植入物骨位置和大小的敏感性。预测的完整股骨响应活动性和负荷变化而进行的重塑表明,在此简化模型中,尽管外在作用的影响很重要,但植入的机制仍占主导地位。这项研究支持将预测性骨重塑作为物理和计算研究范围中的一项内容的应用,应在新假体的临床前评估中进行。

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