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Periprosthetic DXA after total hip arthroplasty with short vs. ultra-short custom-made femoral stems

机译:全髋关节置换术后股骨假体DXA与超短定制股骨柄

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Background and purpose Dual-energy X-ray absorptiometry (DXA) analysis of the 7 periprosthetic Gruen zones is the most commonly used protocol to evaluate bone remodeling after the implantation of conventional femoral stems. We assessed the value of DXA after cementless primary total hip arthroplasty (THA) by comparing the effect of progressive shortening of the stem of two femoral implants on periprosthetic bone remodeling using a specifically developed protocol of analysis with 5 periprosthetic regions of interest (ROIs). Patients and methods Bone mineral density (BMD) was evaluated in 37 patients in the plateau stage, 3 years after THA. Two femoral implants featuring conceptually new designs and surgical technique were tested: types 1 and 2, characterized by extremely short stem and virtual absence of distal stem, respectively. Results We found that progressive shortening of the femoral stem produces more proximal loading, which effectively preserves metaphyseal bone stock and increases periprosthetic BMD in the medial ROIs over time. In the type 2 group, higher absolute BMD values were observed in medial ROIs 4 and 5. No differences were found in ROIs 1, 2, and 3. Interpretation This study shows the flexibility of DXA in adapting the protocol of periprosthetic analysis to the specific requirements of new implant designs, and it shows its high sensitivity in evaluation of the biological response of bone to changes in implant shape.
机译:背景和目的对7个假体周围Gruen区域进行双能X线骨密度仪(DXA)分析是评估常规股骨干植入后骨重塑的最常用方法。我们通过使用专门开发的5个感兴趣的假体周围区域分析方案,比较了两个股骨植入物茎的缩短对假体周围骨重塑的影响,从而评估了非骨水泥性原发性全髋关节置换术(THA)后DXA的价值。患者和方法在THA 3年后的高原期,对37例患者的骨矿物质密度(BMD)进行了评估。测试了两种具有概念上新颖的设计和手术技术的股骨植入物:1型和2型,分别具有极短的茎和几乎没有远端茎的特征。结果我们发现,随着时间的推移,股骨干的逐渐缩短会产生更多的近端负荷,从而有效保留干meta端骨储备并增加内侧ROI中的假体周围骨密度。在类型2组中,在中间ROI 4和5中观察到更高的绝对BMD值。在ROI 1、2和3中没有发现差异。解释这项研究显示了DXA在使假体周围分析方案适应特定情况方面的灵活性。满足新植入物设计的要求,并且在评估骨骼对植入物形状变化的生物学反应方面显示出很高的敏感性。

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