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The Sintering Behaviour and Mechanical Properties of Hydroxyapatite - Based Composites for Bone Tissue Regeneration

机译:羟基磷灰石基复合材料对骨组织再生的烧结行为和力学性能

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摘要

The developement and regeneration of healthy bone tissue is a complex process that includes the interaction of different cell types and requires a set of coordinated processes. The loss of bone tissue may occur due to various reasons: surgical removal, bone trauma (i.e., fractures) or systemic bone loss (i.e., osteoporosis). When the natural bone tissue is destroyed, the regeneration capacity of the bone is not always satisfactory. The result consists therefore in many functional and structural aberrations. In order to improve and accelerate the healing process, bone substitutes have been developed. Hydroxyapatite has been widely used in bone applications due to its excellent biocompatibility, osteoconductivity and bioactivity [1,2]. The objective of this research is to obtain a new composite biomaterial that can be used as bone substitute. In this study, bovine hydroxyapatite obtained from freshly calcined bovine femur was used. The objective of this research is to obtain a new composite biomaterial that can be used as bone substitute. The experimental composite samples were obtained using bovine hydroxyapatite as matrix and tricalcium phosphate, respectively, magnesium oxide as reinforcement materials. The synthesis process of these new biomaterial composites, the effect of chemical composition, surface structure, chemical and phase composition as well as mechanical features have been investigated.
机译:健康骨组织的发展和再生是一种复杂的方法,包括不同细胞类型的相互作用,并且需要一组协调的过程。由于各种原因可能发生骨组织的丧失:手术切除,骨创伤(即裂缝)或全身骨损失(即骨质疏松症)。当天然骨组织被破坏时,骨的再生能力并不总是令人满意的。因此,结果包括许多功能和结构像差。为了改善和加速愈合过程,已经开发了骨替代品。由于其优异的生物相容性,骨导电性和生物活性,羟基磷灰石已广泛用于骨应用[1,2]。该研究的目的是获得一种新的复合生物材料,可用作骨替代品。在本研究中,使用了从新煅烧的牛股骨中获得的牛羟基磷灰石。该研究的目的是获得一种新的复合生物材料,可用作骨替代品。使用牛羟基磷灰石作为基质和磷酸钙,氧化镁作为增强材料获得实验复合样品。已经研究了这些新型生物材料复合材料的合成过程,研究了化学成分,表面结构,化学和相组合物以及机械特征的作用。

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