• CN:11-2187/TH
  • ISSN:0577-6686

›› 2005, Vol. 41 ›› Issue (11): 86-90.

• 论文 • 上一篇    下一篇

可控微结构支架光固化快速成形间接构造方法

李祥;李涤尘;卢秉恒;王林;王臻   

  1. 西安交通大学机械工程学院;第四军医大学西京医院
  • 发布日期:2005-11-15

STEREOLITHOGRAPHY RAPID PROTOTYPING INDIRECT FABRICATION APPROACH OF SCAFFOLDS WITH CONTROLLED MICROSTRUCTURE

Li Xiang;Li Dichen;Lu Bingheng;Wang Lin;Wang Zhen   

  1. School of Mechanical Engineering, Xi’an Jiaotong University Xijing Hospital, the Fourth Military Medical University
  • Published:2005-11-15

摘要: 提出一种以计算机辅助设计(CAD)和光固化快速成形为基础,精确设计和控制支架内部微观结构,实现支架外形与内部可控微结构一体化制造的方法。根据实际CT数据,应用三维CAD软件重构骨骼外形;依据利于细胞生长和促进成骨的原则,设计不同结构的支架内部微管道,控制微管道的尺寸、形状、走向、分支以及相互连通性。利用光固化快速成形技术构造相应的树脂模具,在模具中填充生物材料,待其固化后,通过热分解去除树脂模具,形成具有可控微结构的支架。光学显微镜下观察支架内部微管道结构,其结果与设计相符合。与传统支架构造方法相比,该方法在对支架外形重构和内部微结构制造的控制方面得到了改善。

关键词: 间接构造, 可控微结构, 快速成形, 支架, 杆组自由度, 构件自由度, 输出构件自由度, 机构自由度

Abstract: An approach based on CAD and stereolithography rapid prototyping is proposed, which provides precise design and control of internal microstructure for scaffolds, achieves the integrated fabricated of external shape and internal microstructure of scaffolds. According to CT data, external shape of skeleton is reconstructed using CAD software. On the principle of facilitating cell growth and osteogensis, the internal microstructure including pore geometry, size, orientation, interconnectivity and branching is designed. The resin molds of scaffolds are fabricated by stereolithography and the biomaterials are filled into the molds.After biomaterials in situ hardening, the molds are removed by pyrolysis The scaffolds with controlled microstucture are achieved. According to the observation under light microscope, the results indicate that the external shape and internal microstructure of scaffolds are in cornformity with the design. Compared with traditional scaffold fabrications, this method provides enhanced control over scaffold shape and internal microstruture.

Key words: Controlled microstructure, Indirect fabrication, Rapid prototyping, Scaffolds, DOF of link-group, DOF of links, DOF of output link, DOF of mechanism

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