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Microstructural characterization and robust comparison of ceramic porous orbital implants

机译:陶瓷多孔轨道植入物的微观结构特征及鲁棒比较

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摘要

This research work tackles the challenge of developing an objective and reliable criterion to score porous bio-ceramic orbital implants with different microstructural characteristics. We produced porous glass-ceramics by the foam replica method and characterized their 3D micro-architecture through non-destructive X-ray micro computed tomography. Six key features were estimated influencing their clinical performance, i.e. total porosity, pore interconnectivity, pore size distribution, surface-to-volume ratio, connectivity density and degree of anisotropy. Surface roughness was also characterized by profilometry. A multiparametric score accounting for all the estimated features was developed and used to evaluate the similarity between the produced porous bioceramics and commercial orbital implants. The clinical use of such a global score could make the selection of orbital implants less arbitrary and less dependent on the skills and personal experience of the ophthalmic surgeon. The approach presented in this study could be extended to other areas of ceramics science and technology.
机译:这项研究工作解决了开发一个客观可靠的标准来评分具有不同微观结构特征的多孔生物陶瓷眼眶植入物的挑战。我们用泡沫复制法生产了多孔微晶玻璃,并通过无损X射线显微计算机断层扫描对其三维微结构进行了表征。评估了影响其临床性能的六个关键特征,即总孔隙度、孔隙互连性、孔隙大小分布、表面体积比、连通密度和各向异性程度。表面粗糙度也通过轮廓术进行表征。开发了一个多参数评分,用于评估所生产的多孔生物陶瓷和商用眼眶植入物之间的相似性,该评分考虑了所有估计特征。临床上使用这样一个全局评分可以减少眼眶植入物的选择随意性,减少对眼科医生技能和个人经验的依赖。本研究提出的方法可以推广到陶瓷科学和技术的其他领域。

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