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Fracture Behavior as Selection Criterion for Alloplastic Bone Graft Applications

机译:骨折行为作为所有骨塑骨移植应用的选择标准

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Designing and processing of the alloplastic bone grafts represent one of the newest trends in bone tissue engineering,solving a lot of trauma problems of the patients simultaneously with technological and economical achievements.Recent developments in the field provide advantageous aspects concerning the internal architecture,mechanical properties and biocompatibility of the alloplastic bone grafts processed by the powder metallurgy(PM)technology.In this respect,the PM biocomposite materials based on hydroxyapatite powder particles reinforced by metallic or ceramic powders afford great benefits combining classic PM processes with different foaming techniques.The obtained biocomposites present special morphological and structural features matching the genuine bone tissue to be grafted,cortical respectively trabecular.This study focuses on the mechanical testing of the hydroxyapatite-based biocomposites reinforced by different foaming agents,specifically TiH2,CaC03 and NH4HC03 up to 25% mass.The overlapping of the obtained experimental results with those reported by the literature leads to the conclusion that the mechanical response of the PM biocomposites studied in this paper may play as a selection criteria to depict their application in hard tissue engineering.
机译:所有骨塑骨移植物的设计和加工代表了骨组织工程最新趋势之一,解决了患者的许多创伤问题,同时具有技术和经济成就。该领域的发展提供了有利的方面,了解内部架构,机械性能由粉末冶金(PM)技术处理的所有塑料骨移植物的生物相容性。在这方面,PM基于金属或陶瓷粉末增强的羟基磷灰石粉颗粒的PM生物复合材料提供了很大的益处,将经典PM工艺与不同的发泡技术相结合。获得生物复合材料存在与待接枝的真正骨组织匹配的特殊形态和结构特征,皮质分别进行饲料。本研究重点是由不同发泡剂加固的羟基磷灰石的生物复合材料的机械测试,特别是TiH2,CaCO 3和NH4HC03高达25%所得实验结果与文献报告的实验结果的重叠导致了本文所研究的PM生物复合材料的机械响应可以作为描绘其在硬组织工程中的应用的选择标准。

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