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Development of morphological filtering method for specification and characterisation of hip replacement taper junctions

机译:形态学过滤方法的发展,用于髋关节置换锥形连接的规范和表征

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The introduction of modular large head metal-on-metal (LHMoM) hip replacements promised lower wear rates and reduced chance of dislocation coupled with an increased range of motion compared to conventional metal-on-metal hips. However, the 2010 National Joint Registry reports a 5 year failure rate of LHMoM hips of 7.8% compared to 6.3% for hip resurfacings and comparisons of well functioning hips have shown the LHMoM have significantly increased metal ion levels compared to resurfacings. This has led to a widely held hypothesis that the modular headeck taper junction could be a site of secondary wear debris and indeed wear has been indentified in this area on a number of retrieved bearing tapers. It is clear that the correct specification of this junction is vital to the optimum in-vivo performance of these bearings and that this could reduce the number of observed failures. This study will investigate the example of a number of newly manufactured total hip replacement femoral stems and will be the first to develop a method for specifying and measuring the underlying form of the textured surface of the critical neck taper which is characterised by a micro-thread. This was achieved through developing a filtering routine that allows for the extraction and isolation of the profile points that would contact the femoral head female taper counterface when in operation. In this study a series of measurements were taken on each component, axially along the neck taper. The measurements were performed using a Talyrond 365 roundness machine with a 5μm diamond stylus. The subsequently extracted profiles were firstly levelled using a least squares method in a post-process routine and were then processed using a newly developed morphological filtering routine to extract the envelope profile of contact points from the primary texture inherent in each profile.
机译:与传统的金属对金属髋关节相比,模块化大头金属对金属(LHMoM)髋关节置换术的引入保证了更低的磨损率,错位的可能性以及更大的运动范围。但是,2010年国家联合注册管理机构报告,LHMoM髋关节5年失败率为7.8%,而髋部换肤为6.3%,功能良好的髋关节的比较显示,LHMoM的金属离子水平明显高于换肤。这导致了一个广泛持有的假设,即模块化的头部/颈部锥度接合处可能是二次磨损碎屑的场所,并且确实在该区域中已确定了许多回收的轴承锥度上的磨损。显然,正确的接合处规格对于这些轴承的最佳体内性能至关重要,这可以减少观察到的故障数量。这项研究将调查一些新制造的全髋关节置换股骨柄的实例,并将首次开发出一种方法,用于指定和测量关键颈部锥度带纹理表面的基本形式,该形式以微螺纹为特征。这是通过开发一个过滤程序实现的,该程序允许提取和隔离在操作时会接触股骨头的女性锥面的轮廓点。在这项研究中,沿着颈部锥度轴向对每个组件进行了一系列测量。使用带有5μm金刚石测针的Talyrond 365圆度仪进行测量。首先在后处理例程中使用最小二乘法对随后提取的轮廓进行平整,然后使用新开发的形态过滤例程对其进行处理,以从每个轮廓固有的主要纹理中提取接触点的包络轮廓。

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