反向全肩关节置换术增强假体治疗重度骨质流失的基底稳定性。

Journal of shoulder and elbow arthroplasty Pub Date : 2021-06-13 eCollection Date: 2021-01-01 DOI:10.1177/24715492211020689
Elise J Martin, Thomas R Duquin, Mark T Ehrensberger
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引用次数: 3

摘要

背景:肩胛盂骨丢失在肩袖撕裂性关节病中是常见的,并且可以在反向肩关节置换术中带来挑战。在这项研究中,我们试图研究一种治疗上盂关节缺损的新选择的生物力学特性,即加强型反向全肩基板。方法:观察无缺损的非增厚底板、有缺损的非增厚底板和有缺损的增厚底板三种情况。增加的底板包括一个30度的半楔,这也与产生的优越缺陷相匹配。样品以60°模拟外展角循环加载以模拟底板松动。利用三维数字图像相关系统在上边缘测量了基板的移动和微动。结果:与无缺损和有缺损的病例相比,在增强后的底板中测量的迁移量无显著差异。在微运动方面,增强的底板显示的值介于无缺陷和有缺陷条件下的微运动之间,但没有统计学意义上的显著量。结论:本研究提供的生物力学证据表明,在存在明显的上盂骨缺损的情况下,增强基板可以减少RSA结构所经历的微运动量,但不能完全恢复到完全接触非增强基板的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Reverse Total Shoulder Arthroplasty Baseplate Stability in Superior Bone Loss With Augmented Implant.

Reverse Total Shoulder Arthroplasty Baseplate Stability in Superior Bone Loss With Augmented Implant.

Reverse Total Shoulder Arthroplasty Baseplate Stability in Superior Bone Loss With Augmented Implant.

Reverse Total Shoulder Arthroplasty Baseplate Stability in Superior Bone Loss With Augmented Implant.

Background: Glenoid bone loss is commonly encountered in cases of rotator cuff tear arthropathy and can create challenges during reverse shoulder arthroplasty. In this study, we sought to investigate the biomechanical properties of a new treatment option for superior glenoid defect, an augmented reverse total shoulder baseplate.

Methods: Three conditions were examined: non-augmented baseplate without defect, non-augmented baseplate with defect, and augmented baseplate with defect. The augmented baseplates included a 30-degree half wedge which also matched the created superior defect. The samples were cyclically loaded at a 60° simulated abduction angle to mimic baseplate loosening. The migration and micromotion of the baseplate were measured on the superior edge using a 3D Digital Image Correlation System.

Results: The migration measured in the augmented baseplate showed no significant difference when compared to the no defect or defect cases. In terms of micromotion, the augmented baseplate showed values that were between the micromotions reported for the no defect and defect conditions, but not by a statistically significant amount.

Conclusion: This study provides biomechanical evidence that augmented baseplates can reduce the amount of micromotion experienced by the RSA construct in the presence of significant superior glenoid bone deficiency, but do not fully restore stability to that of a full contact non-augmented baseplate.

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