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首页> 外文期刊>Biomaterials >Evaluation of the osteogenesis and biodegradation of porous biphasic ceramic in the human spine.
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Evaluation of the osteogenesis and biodegradation of porous biphasic ceramic in the human spine.

机译:评估人体脊柱中多孔双相陶瓷的成骨和生物降解。

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摘要

The histological reports on porous biphasic calcium phosphate ceramic (PBC) in human spine are limited. The osteogenesis and biodegradation of PBC are insufficiently known in human. In present study, the undecalcified histological study was carried out on 20 samples retrieved from posterior spinal fusion in order to reveal the osteogenesis and biodegradation of the PBC in human spine. The quantitative study was performed in 14 samples with sufficient size. Newly formed bone was found in all the samples. More new bone was formed in those samples closely in contact with autogenous bone. The PBC degradation particles were present both in the macrophages and around the tissue. However, those phenomena were highly variable among the samples. New bone formation increased with time and decreased with age. The PBC degradation decreased with age, but it did not differ greatly with time. New bone formation was higher and the residual material was lower in the fusion group than that in non-fusion group. The PBC is a kind of osteoconductive material and do not transform into new bone after a relatively long time. The PBC should be well mixed with the autogenous bone in order to achieve high new bone colonization. The PBC degradation particles and related active phagocytotic activity have been noted.
机译:有关人体脊柱中的多孔双相磷酸钙陶瓷(PBC)的组织学报道有限。在人类中,PBC的成骨和生物降解尚不为人所知。在本研究中,对从后路脊柱融合术中获得的20个样品进行了未脱钙的组织学研究,以揭示人脊柱中PBC的成骨和生物降解。在14个具有足够大小的样品中进行了定量研究。在所有样品中都发现了新形成的骨头。与自体骨紧密接触的那些样品中形成了更多的新骨。 PBC降解颗粒既存在于巨噬细胞中,又存在于组织周围。但是,这些现象在样本之间变化很大。新骨形成随时间增加而随年龄减少。 PBC降解随着年龄的增长而降低,但随时间变化不大。与非融合组相比,融合组新骨形成更高,残留物质更低。 PBC是一种骨传导材料,经过较长时间后不会转变为新骨。 PBC应与自体骨充分混合,以实现高的新骨定植。已经注意到PBC降解颗粒和相关的吞噬活性。

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