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Surface Texture Analysis of Artificial Disks Wear-Tested Under Different Conditions and Comparison to a Retrieved Implant

机译:不同条件下经磨损测试的人造盘的表面纹理分析及与植入物的比较

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Total disk arthroplasty is growing in popularity and becoming an alternative to fusion for the treatment of some degenerative disk diseases. To date, there is little consensus regarding the appropriate in vitro techniques with which to evaluate the biotribological properties of these devices. The current study evaluated the surface texture and topography of lumbar metal-on-metal artificial disks tested in a spine wear simulator compared to an explanted device after twelve months in situ. Six implants were tested under a constant load and unidirectional flexion-extension motion as defined by the ASTM standard guide. One implant was tested under a variable load using a combination of flexion-extension, lateral bending, and axial rotation as specified by the ISO standard. While the retrieved disk retained its initial mirror-like surface finish, implants tested under unidirectional motion were severely damaged by abrasive wear resulting in a significant increase in roughness. The implant tested under combined motions exhibited a multi-directional wear scar with limited surface damage. Although only a single retrieved implant was characterized, the current study suggests that wear testing under unidirectional motion may not produce clinically-relevant surface morphology of metal-on-metal artificial disks.
机译:全椎间盘置换术正变得越来越流行,并已成为融合治疗的替代方法,以治疗某些退行性椎间盘疾病。迄今为止,关于评估这些装置的生物摩擦学特性的适当体外技术尚无共识。当前的研究评估了在脊柱磨损模拟器中测试的腰椎金属人造椎间盘与原位植入十二个月后的植入设备相比的表面质地和形貌。按照ASTM标准指南的定义,在恒定载荷和单向屈伸运动下测试了6个植入物。使用ISO标准规定的屈伸,横向弯曲和轴向旋转的组合,在可变负荷下测试一种植入物。取回的盘保持其最初的镜面状表面光洁度时,在单向运动下测试的植入物由于磨料磨损而严重损坏,从而导致粗糙度显着增加。在联合运动下测试的植入物表现出多向磨损痕迹,表面损伤有限。尽管仅对单个回收的植入物进行了表征,但当前的研究表明,在单向运动下进行磨损测试可能不会产生具有临床意义的金属对金属人造盘的表面形态。

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