首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Mathematical formulae to calculate the theoretical range of motion of prosthetic hip implants with noncircular neck geometry
【24h】

Mathematical formulae to calculate the theoretical range of motion of prosthetic hip implants with noncircular neck geometry

机译:用于计算具有非圆形颈部几何形状的人工髋关节植入物的理论运动范围的数学公式

获取原文
获取原文并翻译 | 示例
           

摘要

Component design and position are major factors in achieving adequate range of motion post hip replacement. It is therefore important to understand how implant design and positioning impact the motion available before impingement. The Yoshimine-Ginbayashi equations allow the theoretical range of motion of total hip replacements to be calculated accurately and quickly. However, a significant limitation of these equations is that they can only be applied to femoral neck geometry with a circular cross section. The objective of the present study was to reformulate the equations to allow fast and accurate calculation of the range of motion for prostheses with any femoral neck geometry. Using vector analysis, formulae were derived such that the range of motion could be calculated from the cross section of the neck at the point of impingement, cup radius at the point of impingement, cup inclination angle, cup anteversion angle, neck angle of the femoral component from the transverse plane and neck anteversion. The range of motion was calculated for circular, truncated circle and free-form femoral neck geometry under a range of component positions. These values were successfully compared with those measured from analysis of solid models in three-dimensional computer-aided design software. The method of analysis presented offers a powerful new technique enabling hip prostheses to be analysed in an accurate and efficient manner, therefore facilitating optimisation of the design geometry, assessment of existing pre-clinical designs and clinical pre-or postoperative evaluation.
机译:部件设计和位置是在髋关节置换术后获得足够运动范围的主要因素。因此,重要的是要了解植入物的设计和定位如何影响撞击前可用的运动。吉峰-金林(Yoshimine-Ginbayashi)方程可精确快速地计算出全髋关节置换的理论运动范围。然而,这些方程式的显着局限性在于它们只能应用于具有圆形横截面的股骨颈几何形状。本研究的目的是重新制定方程,以快速,准确地计算具有任何股骨颈几何形状的假体的运动范围。使用矢量分析,得出公式,从而可以从撞击点的颈部横截面,撞击点的杯半径,杯倾斜角度,杯前倾角,股骨颈角度来计算运动范围横平面和颈部前倾的分量。计算了在一定位置范围内的圆形,截头圆形和股骨颈自由形态的运动范围。这些值已成功与在三维计算机辅助设计软件中对实体模型进行分析所测得的值进行了比较。提出的分析方法提供了一种强大的新技术,可以准确有效地分析髋关节假体,从而有利于优化设计几何形状,评估现有的临床前设计以及进行临床前或术后评估。

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