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首页> 外文期刊>Journal of orthopaedic research >A resorbable porous ceramic composite bone graft substitute in a rabbit metaphyseal defect model.
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A resorbable porous ceramic composite bone graft substitute in a rabbit metaphyseal defect model.

机译:兔干phy端缺损模型中的可吸收性多孔陶瓷复合材料骨移植替代物。

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摘要

The success of converted corals as a bone graft substitute relies on a complex sequence of events of vascular ingrowth, differentiation of osteoprogenitor cells, bone remodeling and graft resorption occurring together with host bone ingrowth into and onto the porous coralline microstructure or voids left behind during resorption. This study examined the resorption rates and bone infiltration into a family of resorbable porous ceramic placed bilaterally in critical sized defects in the tibial metaphyseal-diaphyseal of rabbits. The ceramics are made resorbable by partially converting the calcium carbonate of corals to form a hydroxyapatite (HA) layer on all surfaces. Attempts have been made to control the resorption rate of the implant by varying the HA thickness. New bone was observed at the periosteal and endosteal cortices, which flowed into the centre of the defect supporting the osteoconductive nature of partially converted corals. The combination of an HA layer and calcium carbonate core provides acomposite bone graft substitute for new tissue integration. The HA-calcium carbonate composite demonstrated an initial resorption of the inner calcium carbonate phase but the overall implant resorption and bone ingrowth behaviour did not differ with HA thickness.
机译:转化珊瑚作为骨移植替代物的成功取决于一系列复杂的事件:血管向内生长,骨祖细胞分化,骨重塑和移植物吸收以及宿主骨向内或向内渗透到多孔珊瑚线微结构中或在吸收过程中留下的空隙。这项研究检查了双侧放置在兔胫骨干dia端-干critical端的临界尺寸缺损中的可吸收多孔陶瓷家族的吸收率和骨浸润。通过部分转化珊瑚的碳酸钙以在所有表​​面上形成羟基磷灰石(HA)层,使陶瓷具有可吸收性。已经尝试通过改变HA厚度来控制植入物的吸收速率。在骨膜和骨内皮质皮质观察到新骨,它们流入缺损中心,支持部分转化的珊瑚的骨传导性质。 HA层和碳酸钙核心的结合为新的组织整合提供了复合的骨移植替代物。 HA-碳酸钙复合材料表现出内部碳酸钙相的初始吸收,但总体植入物吸收和骨向内生长行为与HA厚度没有差异。

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