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Comparison of Two Bone Surrogates for Interbody Device Subsidence Testing

机译:两种骨替代物用于人体装置沉陷测试的比较

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Bone surrogates are proposed alternatives to human cadaveric vertebrae for assessing interbody device subsidence. Polyurethane foam blocks are an accepted surrogate for cancellous bone but do not share their heterogeneous bone density distribution. Synthetic vertebrae have been recently developed as an alternative bone surrogate with representations of cortices, endplates, and cancellous bone. The efficacy of each surrogate was evaluated by uniaxially indenting it with an interbody device. The force-displacement curve profiles, failure forces, and depth of implant subsidence were compared for devices seated centrally and peripherally on the surrogates. The synthetic endplate mimicked human endplates through a gradually increasing endplate thickness toward the periphery. This enabled the synthetic vertebrae to provide additional subsidence resistance to implants seated at the periphery. By contrast, the foam block was insensitive to implant placement. Absence of failure in synthetic vertebrae from peripheral implant indentation suggests the synthetic endplate is stronger than human endplates but further study with human cadaveric vertebrae is needed.
机译:骨替代物被提议替代人尸体椎骨以评估椎间融合器的沉降。聚氨酯泡沫块是松质骨的公认替代品,但不共享其异质骨密度分布。合成椎骨最近已发展成为具有皮质,终板和松质骨的代表的替代骨替代物。通过使用椎体间器械单向缩进来评估每个替代物的功效。比较了位于替代物中央和周边的器械的力-位移曲线曲线,破坏力和植入物沉陷深度。合成终板通过朝向外围逐渐增加的终板厚度来模仿人类终板。这使合成椎骨能够为位于周围的植入物提供额外的抗沉陷性。相反,泡沫块对植入物的放置不敏感。由于周围植入物的压痕而导致的合成椎骨缺损,提示合成终板比人终板更坚固,但需要对人尸体椎骨进行进一步研究。

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