首页> 外文会议>First global congress on nanoengineering for medicine and biology 2010 >The Effect of Nano Hydroxyapatite Particles on Morphology and Mechanical Properties of Microcellular Injection Molded Polylactide/Hydroxyapatite Tissue Scaffold
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The Effect of Nano Hydroxyapatite Particles on Morphology and Mechanical Properties of Microcellular Injection Molded Polylactide/Hydroxyapatite Tissue Scaffold

机译:纳米羟基磷灰石颗粒对微孔注塑聚乳酸/羟基磷灰石组织支架的形貌和力学性能的影响

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摘要

The current large demands for transplant organs and tissues has led to extensive research on material synthesis and fabrication methods for biodegradable polymeric scaffolds, which are required to have high porosity, well interconnected pore structure, and good mechanical properties. However, the majority of current scaffold fabrication techniques are either for batch processes or use organic solvents, which can be detrimental to cell survival and tissue growth. The ability to mass produce solvent-free, highly porous, highly interconnected scaffolds with complex geometries is essential to provide off-the-shelf availability [1]. Injection molding has long been used for mass production of complex 3D plastic parts. The low-cost manufacturing, repeatability, and design flexibility inherent in the injection molding process make it an ideal manufacturing process to create 3D scaffolds, as long as high porosity and interconnectivity can be imparted into the finished product.
机译:当前对移植器官和组织的大量需求已导致对可生物降解的聚合物支架的材料合成和制造方法的广泛研究,这些材料需要具有高孔隙率,良好互连的孔结构和良好的机械性能。但是,当前大多数的支架制造技术要么用于分批处理,要么使用有机溶剂,这可能对细胞存活和组织生长有害。批量生产具有复杂几何形状的无溶剂,高度多孔,高度互连的支架的能力对于提供现成的可用性至关重要[1]。长期以来,注塑一直用于大量生产复杂的3D塑料零件。注塑成型过程固有的低成本制造,可重复性和设计灵活性使其成为制造3D支架的理想制造过程,只要可以在成品中赋予高孔隙率和互连性即可。

著录项

  • 来源
  • 会议地点 Houston TX(US);Houston TX(US)
  • 作者单位

    Department of Engineering and TechnologyrnUniversity of Wisconsin-StoutrnMenomonie, Wl, 54751;

    Department of BiomedicalrnEngineering and Department ofrnOrthopedics RehabilitationrnUniversity of Wisconsin-MadisonrnMadison, Wl, 53705;

    Department of MechanicalrnEngineeringrnUniversity of Wisconsin-Madison Madison, Wl, 53706;

    Department of Mechanical EngineeringrnUniversity of Wisconsin-MadisonrnMadison, Wl, 53706;

    School of Mechanical rnAutomotive EngineeringrnSouth China University ofrnTechnology Guangzhou, 510640, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

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