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Cervical interbody fusion cages. An animal model with and without bone morphogenetic protein.

机译:颈椎椎间融合器。有或没有骨形态发生蛋白的动物模型。

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STUDY DESIGN: The Alpine goat model for multilevel anterior cervical discectomy and fusion was used to analyze the use of an intervertebral fusion device to promote an arthrodesis after anterior cervical discectomy. Comparisons were drawn with biomechanical, histologic, and radiographic data. OBJECTIVES: To analyze the use of an intervertebral fusion device, with and without a bone graft substitute, to promote an arthrodesis anterior cervical discectomy. SUMMARY OF BACKGROUND DATA: In previous studies, the goat cervical spine has proven to be an excellent model for examining the healing of fusions using bone grafts, instrumentation, or bone substitutes. METHODS: Three-level anterior cervical dissectomies were performed on 21 mature Alpine goats. Three treatment groups of seven goats each were used. Group I used a standard titanium cervical BAK device filled with autogenous bone graft. Group II used a hydroxyapatite-coated BAK device filled with autogenous bone graft. Group III used a BAK device filled with recombinant human bone morphogenetic protein-2. RESULTS: Radiographically, no cages became displaced. Lucencies were seen around 3 of the 21 cages in Group 1, 4 cages in Group II, and none in Group III. Fluorochrome analysis revealed that the recombinant human bone morphogenetic protein-2-filled cages had an accelerated rate of bone growth around and through each cage-vertebral body interface at 3 weeks. A successful arthrodesis was also more likely with a recombinant human bone morphogenetic protein-2-filled cage (95%) than the hydroxyapatite-coated (62%) or the standard (48%) cage. Biomechanical stiffness testing did not reveal any statistically significant differences between the three groups. There was a tendency for successfully arthrodesed interspaces to be stiffer than those that were not. CONCLUSIONS: The use of a threaded intervertebral fusion cage, with or without hydroxyapatite coating, filled with autogenous bone graft provides a fusion rate that is slightly better than those previously reported using autogenous interbody bone grafts with or without plate stabilization. Recombinant human bone morphogenetic protein-2-filled cages resulted in a much higher arthrodesis rate and accelerated bone formation compared with either autogenous bone-filled BAK devices, or autogenous interbody bone grafts with or without plate stabilization.
机译:研究设计:用于多级颈椎前路椎间盘切除和融合的Alpine山羊模型用于分析椎间融合器在颈椎前路椎间盘切除术后促进关节固定的应用。用生物力学,组织学和射线照相数据进行比较。目的:分析椎间融合器在有无骨移植替代物的情况下促进颈椎前路椎间盘切除术的应用。背景数据摘要:在先前的研究中,山羊颈椎被证明是检查使用骨移植物,器械或骨替代物进行融合愈合的极好模型。方法:对21只成熟的高山山羊进行三级颈椎前路解剖。使用三个处理组,每组七个山羊。第一组使用标准钛颈BAK装置填充自体骨移植物。第二组使用填充有自体骨移植物的羟基磷灰石涂层BAK装置。第三组使用装满重组人骨形态发生蛋白2的BAK装置。结果:在影像学上,没有笼子移位。在第1组的21个笼子中有3个笼罩着幸,在第2组中有4个笼罩,而在第III组中没有一个。荧光染料分析显示,在3周时,重组人骨形态发生蛋白2填充的笼在每个笼-椎体界面周围并通过每个笼-椎体界面的骨骼生长速度加快。与羟基磷灰石涂层(62%)或标准(48%)笼相比,重组人骨形态发生蛋白2填充笼(95%)也更有可能成功完成关节固定术。生物力学刚度测试未显示出三组之间的任何统计学显着差异。成功地关节固定的间隙比没有间隙的间隙要硬。结论:使用带或不带羟基磷灰石涂层的椎间融合椎弓根融合器填充自体骨移植物,其融合率比先前报道的自体椎体间骨移植物具有或不具有钢板稳定性的融合率稍好。与自体骨填充BAK装置或自体椎间骨植骨(有或没有板稳定)相比,重组人骨形态发生蛋白2填充笼可实现更高的关节固定率并加速骨形成。

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