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首页> 外文期刊>Journal of the European Ceramic Society >3D printing of bone substitute implants using calcium phosphate and bioactive glasses
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3D printing of bone substitute implants using calcium phosphate and bioactive glasses

机译:使用磷酸钙和生物活性玻璃的3D打印骨替代物植入物

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Customized implants for bone replacement are a great help for a surgeon to remodel maxillofacial or craniofacial defects in an esthetical way, and to significantly reduce operation times. The hypothesis of this study was that a composite of β-tricalcium phosphate (β-TCP) and a bioactive glass similar to the 45S5 Henchglass is suitable to manufacture customized implants via 3D-printing process. The composite was chosen because of the bioresorption properties of the β-TCP, its capability to react as bone cement, and because of the adjustability of the bioactive glass from inert to bioresorbable. Customized implants were manufactured using the 3D-printing technique. The four point bending strength of the printed specimens was 14.9 MPa after sintering. XRD analysis revealed the occurrence of two other phases, CaNaPO_4 and CaSiO_3 , both biocompatible and with the potential of biodegradation. We conclude that it is possible to print tailored bone substitute implants using a bioactive TCP/glass composite. The glass is not involved as reactive substance in the printing process. This offers the opportunity to alter the glass composition and therefore to vary the composition of the implant.
机译:定制的用于骨置换的植入物对于外科医生以美学的方式重塑颌面部或颅面缺损,并显着减少手术时间有很大帮助。这项研究的假设是,β-磷酸三钙(β-TCP)和类似于45S5 Henchglass的生物活性玻璃的复合材料适合通过3D打印工艺制造定制的植入物。选择该复合材料是因为β-TCP的生物吸收特性,其作为骨水泥反应的能力以及生物活性玻璃从惰性到可生物吸收的可调节性。使用3D打印技术制造了定制的植入物。烧结后,印刷样品的四点弯曲强度为14.9MPa。 X射线衍射分析揭示了另外两个相CaNaPO_4和CaSiO_3的发生,它们具有生物相容性并且具有生物降解的潜力。我们得出结论,可以使用生物活性TCP /玻璃复合材料印刷定制的骨替代物植入物。玻璃在印刷过程中不作为反应性物质参与。这提供了改变玻璃成分并因此改变植入物成分的机会。

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