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哪种股骨颈适合双动杯?生物力学评估。

Which femoral neck for a dual mobility cup? A biomechanical evaluation.

机构信息

Department of Orthopedic Surgery, Lausanne University Hospital and University of Lausanne, Avenue Pierre Decker, 4, CH - 1011, Lausanne, Switzerland.

Stryker, Mahwah, NJ, USA.

出版信息

Int Orthop. 2022 Aug;46(8):1783-1793. doi: 10.1007/s00264-022-05415-z. Epub 2022 May 16.

Abstract

PURPOSE

This study aimed to evaluate polyethylene (PE) damage and wear lesions to the chamfer of mobile components under mobile and fixed femoral neck impingement at the third articulation, and to determine which femoral neck characteristics should be considered with a dual mobility cup to limit those lesions.

METHODS

Two femoral neck geometries (cylindrical and quadrangular) with two surface finishing roughness (rough and polished), and two head-to-neck ratios (28- and 22.2-mm diameter femoral heads) were evaluated in a hip simulator testing. For each characteristic, six femoral necks were tested with six dual mobility cups under fixed and mobile femoral neck impingement conditions. Chamfer PE damage and volumetric wear were evaluated and compared for each femoral neck characteristic and impingement condition.

RESULTS

Under mobile impingement condition, femoral neck characteristics did not significantly affect PE damage and wear lesions to the chamfer (p = 0.283 to 0.810). However, under fixed impingement condition, significantly higher PE damage and wear lesions to the chamfer were produced by the quadrangular geometry compared to the cylindrical geometry (p = 0.004 to 0.025). In addition, with the quadrangular geometry, rough surface finishing was demonstrated to increase volumetric wear of the chamfer (p = 0.009). No significant influence of head-to-neck ratio was observed on PE damage and wear lesions to the chamfer (p = 0.244 to 0.714).

DISCUSSION

This biomechanical study emphasized that femoral neck characteristics are critical with dual mobility cup and tend to favor a cylindrical geometry particularly whether fixed impingement at the third articulation occurs.

摘要

目的

本研究旨在评估在第三关节处移动和固定股骨颈撞击时,对移动部件倒角处的聚乙烯(PE)损伤和磨损的影响,并确定哪些股骨颈特征应与双动杯一起考虑,以限制这些损伤。

方法

在髋关节模拟器测试中,评估了两种股骨颈几何形状(圆柱形和四边形)和两种表面粗糙度(粗糙和抛光),以及两种头颈比(直径为 28-和 22.2-mm 的股骨头)。对于每个特征,每个股骨颈用六个双动杯进行了六种测试,以固定和移动股骨颈撞击的条件。评估并比较了每个股骨颈特征和撞击条件下的倒角处的 PE 损伤和体积磨损。

结果

在移动撞击条件下,股骨颈特征对倒角处的 PE 损伤和磨损没有显著影响(p=0.283 至 0.810)。然而,在固定撞击条件下,与圆柱形几何形状相比,四边形几何形状导致倒角处的 PE 损伤和磨损显著增加(p=0.004 至 0.025)。此外,在四边形几何形状下,粗糙表面处理被证明会增加倒角的体积磨损(p=0.009)。头颈比对倒角处的 PE 损伤和磨损没有显著影响(p=0.244 至 0.714)。

讨论

这项生物力学研究强调了股骨颈特征对于双动杯非常重要,并且倾向于选择圆柱形几何形状,特别是在第三关节处发生固定撞击时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9293/9349148/9e82f549bc35/264_2022_5415_Fig1_HTML.jpg

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