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Pore throat size and connectivity determine bone and tissue ingrowth into porous implants: Three-dimensional micro-CT based structural analyses of porous bioactive titanium implants

机译:孔喉的大小和连通性决定了骨骼和组织向多孔植入物的向内生长:基于三维微CT的多孔生物活性钛植入物的结构分析

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摘要

A porous structure comprises pores and pore throats with a complex three-dimensional (3D) network structure, and many investigators have described the relationship between average pore size and the amount of bone ingrowth. However, the influence of network structure or pore throats for tissue ingrowth has rarely been discussed. Four types of bioactive porous titanium implants with different pore sizes and porosities (6 mm in diameter and 15 mm long) were analyzed using specific algorithms for 3D analysis of interconnectivity based on a micro focus X-ray computed tomography system. In vivo histomorphometric analysis was performed using the very same implants implanted into the femoral condyles of male rabbits for 6 and 12 weeks. This matching study revealed that more poorly differentiated pores tended to have narrow pore throats, especially in their shorter routes to the outside. In addition, for assessment of the entire implant, we proposed new two indices that represent the degree of bone and tissue ingrowth into an implant by considering the effect of narrow pore throats.
机译:多孔结构包括具有复杂的三维(3D)网络结构的孔和孔喉,许多研究人员已经描述了平均孔径与骨向内生长量之间的关系。但是,很少讨论网络结构或孔喉对组织向内生长的影响。使用基于微焦点X射线计算机断层扫描系统的3D互连互通性特定算法,分析了具有不同孔径和孔隙率(直径6毫米,长15毫米)的四种类型的生物活性多孔钛植入物。使用植入雄性兔股骨con的完全相同的植入物进行了6周和12周的体内组织形态计量学分析。这项匹配研究表明,分化较差的毛孔往往具有狭窄的孔喉,尤其是在通向外部的较短路径中。另外,为了评估整个植入物,我们提出了两个新的指标,它们通过考虑窄孔喉的影响来表示骨骼和组织向植入物的向内生长的程度。

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