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Computational prediction of change in stiffness of bone-scaffold structure in regeneration process

机译:再生过程中骨支架结构刚度变化的计算预测

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For a bone regeneration using a biodegradable scaffold, design of its external shape and geometry of porous microstructure is a key issue to control the structural properties of regenerated bone tissue as well as the regeneration process [1]. During and after the regeneration process, in which degradation of the scaffold and formation of the new bone occurs in the same time frame, bone-scaffold system is required to keep and obtain a desired mechanical function such as the stiffness as a structural system. The purpose of this study was to propose a computational simulation method to predict the change in the stiffness of bone-scaffold system in the bone tissue regeneration process.
机译:对于使用可生物降解的支架的骨再生,其外部形状和多孔微观结构的几何形状的设计是控制再生骨组织的结构性以及再生过程的关键问题[1]。在再生过程中和之后,在该再生过程中,在同一时间框架中发生支架和新骨的形成,需要骨支架系统以保持和获得所需的机械功能,例如刚度作为结构系统。本研究的目的是提出一种计算模拟方法,以预测骨组织再生过程中的骨支架系统的刚度变化。

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