首页> 外文期刊>Spine >Changes in bone architecture during spinal fusion: three years follow-up and the role of cage stiffness.
【24h】

Changes in bone architecture during spinal fusion: three years follow-up and the role of cage stiffness.

机译:脊柱融合术期间骨结构的变化:三年随访以及保持架僵硬的作用。

获取原文
获取原文并翻译 | 示例
           

摘要

STUDY DESIGN: A morphometrical analysis of microcomputed tomography-based reconstructions of bone from the fusion zone in spinal cages. OBJECTIVE: To describe the architectural changes of the fusing bone tissue in time and to study the effect of cage stiffness on the development of the bone architecture within the cage. SUMMARY OF BACKGROUND DATA: Interbody fusion within spinal cages is routinely evaluated as either successful or not successful. The quality of the fusion, however, strongly depends on the architecture (i.e., structure and density) of the bone tissue within the cage. Bone architecture obviously changes during the fusion process, and cage stiffness is known to play a pivotal role. METHODS: Nine bone samples were available from a long-term in vivo study on resorbable spinal cages in Dutch milk goats described elsewhere. Follow-up periods of 3, 6, 12, 24, 30, and 36 months were considered for cages made of titanium or Poly L-Lactic Acid. The specimens were scanned with a resolution of 13 microm in a microcomputed tomography system. From the resulting reconstructions, the bone density; trabecular thickness, spacing, and number; connectivity density; and structure model index were assessed. RESULTS: We found a homogenization of all bone structure indexes along the spinal axis with time, and remarkably faster in the Poly L-Lactic Acid cages than in the titanium cages. After longer follow-up periods, a coarser bone structure with larger trabecular thickness and intertrabecular spacing was found. The structure model index appeared to be sensitive for nonunions. CONCLUSIONS: More "mature" spinal fusions showed a coarser and more homogeneous bone structure. High cage stiffness had a deteriorating effect on the fusion rate. The structure model index appears to be an interesting parameter for quantifying the quality of bone in the fusion zone.
机译:研究设计:基于显微计算机断层扫描的脊柱融合区融合区骨重建的形态计量学分析。目的:及时描述融合性骨组织的结构变化,研究保持架刚度对保持架内骨骼结构发展的影响。背景数据摘要:常规将椎间融合器内的椎间融合评估为成功或失败。但是,融合的质量在很大程度上取决于笼子内骨组织的结构(即结构和密度)。骨结构在融合过程中显然发生了变化,已知笼的刚度起着关键作用。方法:9个骨骼样品可从其他地方描述的荷兰奶山羊中可吸收脊柱笼的长期体内研究中获得。对于钛或聚L-乳酸制成的笼子,随访期为3、6、12、24、30和36个月。在微型计算机断层扫描系统中以13微米的分辨率扫描标本。从结果得到的重建,骨密度;小梁的厚度,间距和数量;连接密度;评估结构模型指标。结果:我们发现随着时间的推移,沿脊轴的所有骨骼结构指标均质化,在聚L-乳酸笼中比在钛笼中明显更快。经过更长的随访时间,发现具有较大的小梁厚度和小梁间距的较粗骨结构。结构模型指数似乎对骨不敏感。结论:更多的“成熟的”脊柱融合显示出更粗糙,更均匀的骨结构。高的笼刚度对融合率有恶化的影响。结构模型指数似乎是用于量化融合区骨质的有趣参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号