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Direct ink writing of highly bioactive glasses

机译:直接墨水写入高生物活性玻璃

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摘要

Direct ink writing (DIW), or Robocasting, is an additive manufacturing technique that offers the opportunity to create padent specific bioactive glass scaffolds and high strength scaffolds for bone repair. The original 45S5 Bioglass" composition crystallises during sintering and until now, robocast glass scaffolds contained at least 51.9 mol% SiO(2)or B(2)O(3)to maintain their amorphous structure. Here, ICIE16 and PSrBG compositions, containing 50 mol% SiO2, giving silicate network connectivity close to that of 45S5, were robocast and compared to 13-93 composition. Results showed Pluronic F-127 can be used as a universal binder regardless of glass reactivity and that particle size distribution affected the ink "printability". Scaffolds with interconnects of 150 pm (41-43% porosity) had compressive strengths of 32-48 MPa, depending on the glass composition. Robocast scaffolds from these highly reactive bioactive glasses promise greatiy improved bone regeneration rates compared with existing bioactive glass scaffolds.
机译:直接墨水写入(DIW)或抢劫,是一种添加剂制造技术,提供了创造成色的特异性生物活性玻璃支架和高强度支架的机会,用于骨骼修复。原始的45S5生物加工“烧结期间的成分结晶,直到现在,robocast玻璃支架含有至少51.9mol%SiO(2)或B(2)O(3)以维持其非晶结构。这里,ICIE16和PSRBG组合物,含有&LT ; 50摩尔%SiO 2,硅酸盐网络连接接近45s5,是罗伯累施,与13-93种组成相比。结果显示Pluronic F-127可以用作玻璃反应性,并且该粒度分布影响墨水“可打印性”。具有150μm的互连的支架(41-43%孔隙率)具有32-48MPa的压缩强度,这取决于玻璃组成。来自这些高反应性生物活性玻璃的罗伯曲目支架承诺与现有的骨再生率很高生物活性玻璃支架。

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