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Configuration of anchorage holes affects fixation of the acetabular component in cemented total hip replacement - a finite element study

机译:固定全髋关节置换术中固定孔的配置影响髋臼组件的固定-有限元研究

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摘要

Our survey of current practice among UK orthopaedic surgeons shows wide variations in fixation techniques. The aim of this study is to investigate the effect of drilling different configurations of anchorage holes in the acetabulum on implant stability. To avoid variables that could incur during in-vitro testing, we used commercially-available COSMOS finite element analysis package to investigate the stress distributions, deformations, and strains on the cement mantle when drilling three large anchorage holes and six smaller ones, with straight and rounded cement pegs. The results, which are in line with our in-vitro studies on simulated reconstructed acetabulae, indicate better stability of the acetabular component when three larger holes than six smaller holes are drilled and when the necks of the anchorage holes are rounded. The longevity of total hip replacements could be improved by drilling three large anchorage holes, rather than many smaller ones, as initially proposed by Charnley.
机译:我们对英国整形外科医生目前的做法进行的调查显示,固定技术存在很大差异。这项研究的目的是研究在髋臼上钻不同形状的固定孔对植入物稳定性的影响。为避免在体外测试过程中产生变量,我们使用了市售的COSMOS有限元分析软件包来研究在水泥地幔上钻三个大的锚固孔和六个小的锚固孔时的应力分布,变形和应变。圆形水泥钉。该结果与我们对模拟重建髋臼的体外研究相吻合,表明当钻出三个大孔而不是六个小孔时,并且锚固孔的颈部呈圆​​形时,髋臼组件的稳定性更好。通过钻三个大的固定孔,而不是像Charnley最初建议的许多较小的固定孔,可以提高全髋关节置换术的寿命。

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