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Strategic Study of CAE >> 2013, Volume 15, Issue 1

The development of biofabrication technology

1. School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China; 

2. State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China

Funding project:国家自然科学基金项目(50775178;51075320);英国皇家工程协会英中合作项目(2011) Received: 2012-08-31 Available online: 2013-01-14 15:42:09.000

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Abstract

The concept of biofabrication was provided by School of Mechanical Engineering, Xi'an Jiaotong University since the 1990s. Using the engineering methods to solve the medical issues, we have made some achievements and development on the implants for bone and cartilage, liver, intestinal tissue as well as brain. This paper emphasized on the lastest research work of the customized artificial prosthesis, bioactive bone and joint, and tissue engineered liver in our laboratory, which was corporated with the experts and sciencists of various areas from medicine, biology as well as materials for more than 20 years. Furthermore, it also explored the problems and prospects for the development and application of biofabrication.

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References

[ 1 ] 北京中研纵横经济信息中心. 2011—2015年中国人工关节市场 调查及投资前景价值战略规划预测报告[R]. 2009.

[ 2 ] Langer R,Vacanti J P. Tissue engineering [J]. Science,1993, 260:920-926.

[ 3 ] 李涤尘,刘 葳,康利轲. 促进骨改建的定制化柔性钛下颌骨替 代物及其制备方法[P].ZL200710018365.7. 2001.

[ 4 ] 刘 葳,李涤尘,周丽斌,等. 定制化柔性下颌骨钛替代物的有限 元优化分析及动物试验[J]. 机械工程学报,2010,46:133-138. link1

[ 5 ] Singare S,Lian Q,Li D,et al. Rapid prototyping assisted sur gery planning and custom implant design [J]. Rapid Prototyping Journal,2009(15):19-23. link1

[ 6 ] Lian Q,Li D,Lu Z,et al. Customized titanium prostheses incorporated with autologous fibula for the treatment of whole mandibular bone resorption:A successful case report [C]// International Conference of Biofabrication. USA:Philadelphia,2010.

[ 7 ] 康利轲. 基于骨应力重建的下颌假体柔性结构设计与优化[D]. 西安:西安交通大学,2007.

[ 8 ] 王 千. 基于光固化原型定制化钛合金下颌骨替代物快速铸造 工艺研究[D]. 西安:西安交通大学,2010.

[ 9 ] 乔 莎. 个性化功能型下颌假体板料快速压制成形技术研究 [D]. 西安:西安交通大学,2012.

[10] 刘晓华,连 芩,李涤尘,等. 人工髋关节假体耦合系统承载曲 面定制化设计及应力分析[C]// 第七届全国康复医学工程和康 复工程学术研讨会. 北京:2010. link1

[11] 王 臻,李涤尘,刘 非,等. 基于快速成型技术的个体化人工股 骨髁关节面的设计与应用[J]. 中华外科杂志,2004,42:746-749. link1

[12] Lian Q,Sun Y,Li D,et al. Design and analysis of bipolar semiknee prosthesis for better biotribological performance [C]//37th LEEDS-LYON Symposium on Tribology. UK:Leeds,2010.

[13] 革 军,王 臻,李涤尘,等. 二代定制化双动半膝关节假体的 设计及其韧带附丽相关的研究[J]. 科学技术与工程,2011, 9(11):1929-1934. link1

[14] 张永睿,李涤尘,连 芩. 双层结构颈椎间盘假体及其结构优 化设计[J]. 北京生物医学工程,2006,25:371-375. link1

[15] 何 威. 基于生物力学脊柱侧凸快速建模及矫形方案优化 [D]. 西安:西安交通大学,2012.

[16] Lian Q,Li D C,Tang Y P,et al. Computer modeling approach for a novel internal architecture of artificial bone [J]. ComputerAided Design,2006,38:507-514. link1

[17] Bian W,Lian Q,Li D,et al. Design & fabrication of self assembled vascularization biomimetic core implant:A potent therapy solution for early Osteonecrosis of the femoral head [C]// International Conference of Biofabrication. USA :Philadelphia, 2010.

[18] Xu S,Li D,Xie Y,et al. The growth of stem cells within [beta]-TCP scaffolds in a fluid-dynamic environment [J]. Materials Science and Engineering C,2008,28:164-170. link1

[19] Chen Z Z,Li D C,Lu B H,et al. Fabrication of artificial bioactive bone using rapid prototyping [J]. Rapid Prototyping Journal, 2004(10):327-333. link1

[20] Li X,Bian W,Li D,et al. Fabrication of porous beta-tricalcium phosphate with microchannel and customized geometry based on gel- casting and rapid prototyping [J]. Proc Inst Mech Eng H,2011,225:315-323. link1

[21] Lian Q,Zhu L,Li D,et al. Stereolithography manufacturing of anatomically shaped PEG- hydrogel scaffold for cartilage tissue engineering [C]//Proceedings of the 10th International Conference on Frontiers of Design and Manufacturing. China: Chongqing,2012.

[22] Li X,Li D,Wang L,et al. Osteoblast cell response to beta-tricalcium phosphate scaffolds with controlled architecture in flow perfusion culture system [J]. J Mater Sci Mater Med,2008,19: 2691-2697. link1

[23] Bian W,Li D,Lian Q,et al. Fabrication of a bio-inspired betaTricalcium phosphate/collagen scaffold based on ceramic stereolithography and gel casting for osteochondral tissue engineering [J]. Rapid Prototyping Journal,2012,18:68-80. link1

[24] 连 芩,李涤尘,王 臻,等. 壳聚糖纤维/磷酸钙骨水泥复合材 料人工骨的降解性能[J]. 机械工程学报,2010,46:110-115. link1

[25] He J,Li D,Lu B,et al. Custom fabrication of a composite hemi-knee joint based on rapid prototyping [J]. Rapid Prototyping Journal,2006,12(4):198-205. link1

[26] 赵 倩,刘亚雄,李涤尘,等. 肝组织工程支架的仿生设计与有 限元分析[J]. 西安交通大学学报,2011,45:108-112. link1

[27] Mao M,He J,Liu Y,et al. Ice-template-induced silk fibroinchitosan scaffolds with predefined microfluidic channels and fully porous structures [J]. Acta Biomater,2012,8:2175-2184. link1

[28] 吕 毅,樊 超,余 琳,等. 一种带支架的肝胆管空肠吻合和 肠肠端侧吻合磁性装置[P]. ZL201010216609.4. 中国2010.

[29] 白宗旭,刘亚雄,王会友,等. 脑深部神经刺激微电极的表面改 性研究[J]. 西安交通大学学报,2011,45:98-103. link1

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