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Chemical dissolution and bone formation in identical porous β-TCP and HA

机译:在相同的多孔β-TCP和HA中的化学溶解和骨形成

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摘要

Porosity and macroporosity in porous calcium phosphate bioceramics play an important role in conducting cells and vessels penetrating into pores and forming bone ingrowth inside bioceramics. Histological results indicated new bone volume (NBV) was higher in β-tricalcium phosphate (β -TCP) implants than that in hydroxyapatite (HA) implants for identical porosity of 75% at both 1 month and 3 months, and the degradation of β -TCP was too quick to keep its original shape at 3 month. According to the XRD analysis, chemical dissolution seemed to be one part of degradable mechanism for β-TCP.
机译:多孔磷酸钙生物陶瓷中的孔隙率和大孔率在引导细胞和血管渗透进入孔隙并在生物陶瓷内部形成骨向内生长方面起着重要作用。组织学结果表明,在相同的孔隙率下(分别在1个月和3个月时)为75%,β-磷酸三钙(β-TCP)植入物的新骨体积(NBV)高于羟基磷灰石(HA)植入物,并且β-降解TCP太快,无法在3个月内保持其原始形状。根据XRD分析,化学溶解似乎是β-TCP降解机制的一部分。

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