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The application of VP-ESEM in microstructure analysis of ceramic macroporous scaffolds for bone tissue engineering

机译:VP-ESEM在骨组织工程中陶瓷大孔支架微观结构分析中的应用

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Macroporous ceramic scaffolds are widely used in the therapy of bone defects. Adaptation of such materials inside the human body depends strongly on their microstructure, particularly on the size of pores and the degree of pore interconnections. In the presented research a novel macroporous ceramic was prepared by means of the polymer sponge method from mixtures of hydroxyapatite of porcine origin and 30 or 50 wt% of biocompatible and bioresorbable phosphate glass. The materials were sintered at 700, 800, and 900 °C and at 700 and 800 °C, respectively. A unique set of VP-ESEM micrographs of ceramics microstructure was recorded. Based on direct measurements taken on these images, histograms representing macropore size distribution and distribution of size of macropore interconnections were plotted for each sample. The obtained data was used to determine average macropore size and average size of macropore interconnections for each material. The average macropore size varied from 532 to 761 μm while the average size of macropore interconnections ranged from 145 to 369 μm.
机译:大孔陶瓷支架广泛用于骨缺陷的治疗。在人体内部的改编在人体内部依赖于它们的微观结构,特别是对孔的尺寸和孔隙互连程度。在本研究中,通过来自猪来源的羟基磷灰石的混合物和30或50wt%的生物相容性和可生物可吸收磷酸盐玻璃制备一种新型大孔陶瓷。将材料分别在700,800和900℃和700和800℃下烧结。记录了一组陶瓷微观结构的独特VP-ESEM显微照片。基于对这些图像进行的直接测量,针对每个样品绘制代表大孔尺寸分布和大孔互连尺寸分布的直方图。所获得的数据用于确定每种材料的平均大孔尺寸和宏观互连的平均大小。平均大孔尺寸从532变化到761μm,而Macropore互连的平均尺寸范围为145至369μm。

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