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Crack Revision Improves Fixation of Uncemented HA-coated Implants Compared with Reaming: An Experiment in Dogs

机译:与铰孔相比裂纹修复可改善未胶凝的HA涂层植入物的固定:狗的实验

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摘要

The crack procedure is a surgical technique for preparing the implant cavity at revision of loose joint replacement components. It disrupts the neocortical bone shell that typically forms around the cavity. Using an animal model, we compared the crack technique with reaming. Twenty micromotion implants were inserted bilaterally into the knees of 10 dogs according to our revision protocol, allowing formation of a standardized revision cavity (loose implant, fibrous tissue, and sclerotic bone rim). Eight weeks later we performed revision surgery. On the control side, in which the neocortex was removed, the cavity was reamed. On the intervention side, in which the neocortex was perforated but left in situ, the cavity was cracked. For revision we used non-motioning hydroxyapatite (HA)-coated, plasma-sprayed titanium implants. Observation after revision was 4 weeks. The implants revised by the crack technique had better mechanical fixation in all mechanical parameters by the push-out test. The crack revisions also provided more new bone formation around the implants compared with the reamed revisions but had no effect on new bone ongrowth. The data suggest using this bone-sparing technique may be superior to reaming in terms of achieving improved early implant fixation of uncemented HA-coated revision implants.
机译:裂缝手术是一种手术技术,用于在松动关节置换组件的修订中准备植入物腔。它破坏了通常在腔周围形成的新皮质骨壳。使用动物模型,我们将裂纹技术与扩孔技术进行了比较。根据我们的修订协议,将二十个微动植入物从两侧插入10只狗的膝盖,从而形成标准化的修订腔(松散的植入物,纤维组织和硬化性骨缘)。八周后,我们进行了翻修手术。在去除新皮层的对照侧,扩孔。在新皮层穿孔但留在原位的介入侧,空腔破裂。对于修订,我们使用了不运动的羟基磷灰石(HA)涂层,等离子喷涂钛植入物。修订后的观察为4周。通过压裂技术改进的植入物通过推出试验在所有机械参数上具有更好的机械固定性。与扩孔版本相比,裂痕修订版还提供了更多的新骨形成,但对新骨骼的长出没有影响。数据表明,使用这种保留骨的技术可能会获得更好的早期未植入HA涂层翻修植入物固定效果,优于扩孔。

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