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首页> 外文期刊>Journal of shoulder and elbow surgery >Biomechanical comparison of glenoid implants with adaptable and fixed backside curvatures in anatomic total shoulder arthroplasty
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Biomechanical comparison of glenoid implants with adaptable and fixed backside curvatures in anatomic total shoulder arthroplasty

机译:具有适应性和固定的后侧曲率在解剖学总肩部成形术中的胶质植入物的生物力学比较

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摘要

BackgroundWe evaluated the biomechanical effects and potential advantages of glenoid implants with adaptable backside curvature radii and compared them with standard implants having fixed backside curvatures in anatomic total shoulder arthroplasty (aTSA) for primary glenohumeral osteoarthritis with uniconcave glenoids. MethodsA glenoid implant with adaptable backside curvatures (Aequalis PerFORM, Tornier SAS, Montbonnot, France) was compared with its previous model having a fixed curvature radius. Virtual aTSAs were performed in 24 patients from preoperative shoulder computed tomography data sets, using both implants in each patient. For all 48 simulated aTSAs, we first measured the glenoid bone reaming depth, subchondral bone quality after reaming, and implant backside surface and then the predicted cement stress, bone–cement interfacial stress, and bone strain at 60° of arm abduction. These biomechanical quantities were tested for differences between adaptable and fixed implants and for correlations between preoperative measurements and postoperative predictions. ResultsAdaptable glenoid implants induced a significant decrease in cement stress (P?=?.008), bone–cement interfacial stress (P?=?.045), and bone strain (P?=?.039), particularly for glenoids with curvature radii larger than 40?mm. However, these biomechanical effects were not significantly correlated with an increase in subchondral glenoid bone quality. ConclusionsOur study confirms the presumed biomechanical advantages of adaptable glenoid implants, even though the effects were not directly due to the adaptation of the backside curvature radius. Benefits were more pronounced for glenoids with large curvature radii. Our initial biomechanical findings should now be corroborated with large-scale clinical studies.
机译:背景技术评估了胶质植入物的生物力学效应和具有适应性的背面曲率半径的潜在优势,并将其与标准植入物进行比较,该标准植入物具有固定的背面曲率,该植入物在原发性胶质型骨关节炎(ATSA)中具有固定的背面曲率,用于初级Glenohumers骨关节炎,具有Uniconcave胶质骨质。 Motietchsa与适应适应的背面曲率(Aequalis表演,Tornier SAS,Montbonnot,法国)的植物植入物与其先前的具有固定曲率半径的模型进行了比较。使用每位患者的植入物在术前肩部计算断层扫描数据集中进行虚拟ATSA。对于所有48个模拟ATSA,我们首先在铰孔后测量胶质骨骨骼铰孔深度,卵形骨质质量,并植入后侧表面,然后是预测的水泥应力,骨水泥界面应力和60°的臂绑架。测试这些生物力学量以适应和固定植入物之间的差异以及术前测量和术后预测之间的相关性。结果adaptable胶质植入物诱导水泥应激的显着降低(p?=Δ.008),骨水泥界面应力(p?= 045)​​和骨菌株(p?= 039),特别是具有曲率的关节盂半径大于40?mm。然而,这些生物力学效应与子骨髓神经胶质骨质质量的增加没有显着相关。结论您的研究证实了适应性关节植入物的假定生物力学优势,即使由于对背侧曲率半径的适应而不是直接的影响。对于具有大曲率半径的胶质盂更加宣称益处。我们的初始生物力学发现现在应该用大规模的临床研究得到证实。

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