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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Solid freeform fabrication of porous calcium polyphosphate structures for bone substitute applications: In vivo studies
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Solid freeform fabrication of porous calcium polyphosphate structures for bone substitute applications: In vivo studies

机译:用于骨替代应用的多孔聚磷酸钙结构的固体自由形式制造:体内研究

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摘要

Porous calcium polyphosphate (CPP) structures with 30 volume percent porosity and made by solid freeform fabrication (SFF) were implanted in rabbit femoral condyle sites for 6-wk periods. Two forms of SFF implants with different stacked layer orientation were made in view of prior studies reporting on anisotropic/orthotropic mechanical properties of structures so formed. In addition, porous CPP implants of equal volume percent porosity made by conventional sintering and machining methods were prepared. Bone ingrowth and in vivo degradation of the three different implant types were compared using back-scattered scanning electron microscopy (BS-SEM) of implant samples and quantitative analysis of the images. The results indicated bone ingrowth with all samples resulting in 30-40% fill of available porosity by bone within the 6-wk period. In the 6-wk in vivo period, approximately 7-9% loss of CPP by degradation had occurred.
机译:采用多孔固体成形法(SFF)制成的具有30%体积百分比孔隙率的多孔聚磷酸钙(CPP)结构植入兔股骨dy部位6周。鉴于先前的研究报道了如此形成的结构的各向异性/正交各向异性机械性能,制作了两种具有不同堆叠层取向的SFF植入物。另外,制备了通过常规烧结和机械加工方法制成的等体积百分孔隙率的多孔CPP植入物。使用植入物样品的背散射扫描电子显微镜(BS-SEM)和图像定量分析,比较了三种不同植入物类型的骨向内生长和体内降解。结果表明,所有样品的骨向内生长,在6周内骨填充了30-40%的可用孔隙度。在体内6周内,发生了约7-9%的CPP降解损失。

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