Computer simulation of the synthesis of medical composite materials with the required structural-mechanical characteristics

A. Tovpinets, V. Leitsin, M. Dmitrieva
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Abstract

A new approach to computer simulation of the synthesis of medical composite materials has been developed to study the determining factors for obtaining a promising class of scaffolds for personalized replacement of bone defects. This class of scaffolds is a dispersed-filled polymer with a biodegradable matrix and a gradient pore structure. Particles of calcium phosphate, magnesium, zinc, boron nitride and biodegradable fibers are considered as dispersed components. This provides antibacterial, medicinal and other properties.A new approach to computer simulation of the synthesis of medical composite materials has been developed to study the determining factors for obtaining a promising class of scaffolds for personalized replacement of bone defects. This class of scaffolds is a dispersed-filled polymer with a biodegradable matrix and a gradient pore structure. Particles of calcium phosphate, magnesium, zinc, boron nitride and biodegradable fibers are considered as dispersed components. This provides antibacterial, medicinal and other properties.
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合成具有所需结构-力学特性的医用复合材料的计算机模拟
本文提出了一种医学复合材料合成计算机模拟的新方法,以研究获得一类有前途的骨缺损个性化替代支架的决定因素。这类支架是一种分散填充的聚合物,具有可生物降解的基质和梯度孔结构。磷酸钙、镁、锌、氮化硼颗粒和可生物降解纤维被认为是分散的成分。这提供了抗菌,药用和其他特性。本文提出了一种医学复合材料合成计算机模拟的新方法,以研究获得一类有前途的骨缺损个性化替代支架的决定因素。这类支架是一种分散填充的聚合物,具有可生物降解的基质和梯度孔结构。磷酸钙、镁、锌、氮化硼颗粒和可生物降解纤维被认为是分散的成分。这提供了抗菌,药用和其他特性。
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