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Studying bone substitute biodegradable polymer materials by means of acoustic microscopy

机译:通过声学显微镜研究骨替代可生物降解的聚合物材料

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Using pulse acoustic microscopy the samples of bone-substitute biodegradable polymer materials were examined. It was shown at frequency range of 50-100 MHz the method is a powerful non-destructive instrument to study internal microstructure morphology and to characterize elastic property of biomaterials. Microstructure of polylactide and polyhydroxybutyrate polymer samples in the form of plates, films and non-woven fabrics were investigated. It was shown that the heating/cooling variations in technological regime affect the structure of the polymer components. The processes of porous formation for the studied biomaterials were studied by means of acoustic microscopy techniques.
机译:使用脉冲声学显微镜检查骨替代可生物降解的聚合物材料的样品。它的频率范围为50-100MHz,该方法是一种强大的非破坏性仪器,用于研究内部微观结构形态并表征生物材料的弹性性能。研究了板,薄膜和非织造织物形式的聚乳糖和多羟基丁酸盐聚合物样品的微观结构。结果表明,技术方案中的加热/冷却变化会影响聚合物组分的结构。通过声学显微镜技术研究了研究生物材料的多孔形成方法。

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