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Rapid Prototyping of hydroxyapatite polymer based nanocomposites for bone tissue engineering

机译:用于骨组织工程的基于羟基磷灰石聚合物的纳米复合材料的快速成型

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The need of reconstructing complex bone defects in the maxillo-facial region as a result of trauma, tumour surgery or congenital malformation has become a hot topic in the field of tissue engineering. Digital tools such as 3D CAD systems and rapid prototyping (RP) machines are a useful tool to realize custom made bone scaffolds. RP techniques allow the construction of complex physical models based on 3D clinical images elaborated by suitable software and CAD systems. Hydroxyapatite (HA) is one of the most used material for bone restoring because of its composition very closed to human bones and teeth. Producing a custom-made scaffold in a ceramic material directly by RP is therefore an exciting challenge. The aim of the present work was to investigate the potential of RP processes as a manufacturing method for products intended for personalized treatments by exploring the production of novel hydroxyapatite-based feedstock materials for RP purposes. Materials for two different kind of RP techniques were deeply characterized, evidencing that the presence of HA is able to greatly increase their physical, thermal and mechanical properties. Composites were subsequently used to obtain 3d structures by RP instruments.
机译:由于创伤,肿瘤手术或先天性畸形而需要重建上颌面部的复杂骨缺损已成为组织工程领域的热门话题。 3D CAD系统和快速原型(RP)机器等数字工具是实现定制骨骼支架的有用工具。 RP技术允许根据由合适的软件和CAD系统精心制作的3D临床图像来构建复杂的物理模型。羟基磷灰石(HA)是最常用的骨修复材料之一,因为它的成分非常接近人体的骨骼和牙齿。因此,直接通过RP生产陶瓷材料的定制支架是一个令人兴奋的挑战。本工作的目的是通过探索生产用于RP的新型基于羟基磷灰石的原料,研究RP工艺作为用于个性化处理产品的制造方法的潜力。对两种不同类型RP技术的材料进行了深入表征,证明HA的存在能够大大提高其物理,热和机械性能。随后使用复合材料通过RP仪器获得3d结构。

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