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首页> 外文期刊>Clinical Orthopaedics and Related Research >Do Bone Graft and Cracking of the Sclerotic Cavity Improve Fixation of Titanium and Hydroxyapatite-coated Revision Implants in an Animal Model?
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Do Bone Graft and Cracking of the Sclerotic Cavity Improve Fixation of Titanium and Hydroxyapatite-coated Revision Implants in an Animal Model?

机译:骨移植和裂缝的硬化腔内改善动物模型中钛和羟基磷灰石涂层的修复植入物的固定吗?

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We previously introduced a manual surgical technique that makes small perforations (cracks) through the sclerotic bone shell that typically forms during the process of aseptic loosening ("crack" revision technique). Perforating just the shell (without violating the proximal cortex) can maintain overall bone continuity while allowing marrow and vascular elements to access the implant surface. Because many revisions require bone graft to fill defects, we wanted to determine if bone graft could further increase implant fixation beyond what we have experimentally shown with the crack technique alone. Also, because both titanium (Ti6Al4V) and hydroxyapatite (HA) implant surfaces are used in revisions, we also wanted to determine their relative effectiveness in this model.
机译:我们之前介绍了一种手动手术技术,其通过巩膜骨壳制成小穿孔(裂缝),所述硬化骨壳通常在无菌松动(“裂缝”修订技术)过程中形成。 仅仅穿着壳(不违反近端皮质),可以保持整体骨连续性,同时允许骨髓和血管元件进入植入物表面。 由于许多修订需要骨移植填充缺陷,所以我们想确定骨移植是否可以进一步增加植入物固定,超出我们通过单独用裂纹技术进行实验显示的植入物固定。 此外,因为钛(Ti6Al4V)和羟基磷灰石(HA)植入物表面被用于修订,我们还希望在该模型中确定它们的相对效果。

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