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大尺寸个体化PEEK植入物精准设计与控性定制研究 被引量:13

Precision Design and Control-performance Manufacturing Research of Large-size Individualized PEEK Implants
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摘要 我国每年有98%的骨缺损患者由于缺乏理想的人工植入物而成为功能受限者,个体化植入物设计制造已经成为我国从经验医疗转型精准医疗的关键部分。聚醚醚酮(Poly-ether-ether-ketone,PEEK)材料被普遍认为是目前最为理想的个体化植入物原材料之一,然而个体化PEEK植入物的复杂结构(尤其是大尺寸植入物)需要综合考虑PEEK材料性能、制造方法的工艺特性、临床植入应用环境等多方面的交叉影响。介绍了面向大尺寸个体化PEEK植入物的精准设计方法与控性定制3D打印方法,确立了个体化植入物设计方法与制造技术的几点准则,并描述了研究技术在一例大范围胸骨肿瘤治疗上的应用过程,所设计与制造的PEEK材料一体式胸肋骨假体,最终植入患者体内,协助大尺寸缺损胸壁的重建。 Every year, 98% of patients in China become functionally restricted due to the lack of ideal individualized artificial implants. The design and manufacture methods of individualized implants has become a key factor of China's transformation from experience medicine to precision medicine. Poly-ether-ether-ketone (PEEK) material is generally considered to be one of the most ideal materials for individual implants at present. However, PEEK’s special properties, manufacturing process characteristics, and clinical application environment should be considered to build the complex structure of individual PEEK implants (especially large scale implants). Therefore, a precision design method and a control-performance 3d printing method are put forward for the individualized PEEK implants, which established some guiding principles of design and manufacturing process. A case about extensive chest wall repaired by a large-size individualized PEEK implant is described to show the specific process of the precision design and control-performance manufacturing method.
作者 李涤尘 杨春成 康建峰 王玲 黄立军 王磊 曹毅 石长全 连芩 LI Dichen;YANG Chuncheng;KANG Jianfeng;WANG Ling;HUANG Lijun;WANG Lei;CAO Yi;SHI Changquan;LIAN Qin(State Key Laboratory for Manufacturing Systems Engineering, Xi’an Jiaotong University, Xi’an 710049;Shaanxi Engineering Research Center for Rapid Manufacturing Technology, Xi’an 710049;Tangdu Hospital, the Fourth Military Medical University, Xi’an 710038)
出处 《机械工程学报》 EI CAS CSCD 北大核心 2018年第23期121-125,共5页 Journal of Mechanical Engineering
基金 国家自然科学基金重点项目(51835010) 西安交通大学新兴学科培育与学科交叉资助项目
关键词 PEEK材料 精准设计 3D打印 控性定制 医疗临床 PEEK material precision design 3D printing control-performance manufacturing clinical application
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  • 1Kurtz S M,Devine J N. PEEK biomaterials in trauma, or- thopedic, and spinal implants [J]. Biomaterials,2007,28 (32) : 4845-4869.
  • 2Tan K, Chua C ,Leong K,et al. Scaffold development us- ing selective laser sintering of polyetheretherketone-hy-droxyapatite biocomposite blends [J]. Biomaterials, 2003,24(18) :3115-3123.
  • 3Tan K,Chua C,Leong K,et al. Selective laser sintering of biocompatible polymers for applications in tissue engi- neering [J]. Bio-medical Materials and Engineering, 2005,15(1) : 113-124.
  • 4Schmidt M,Pohle D,Rechtenwald T. Selective laser sin- tering of PEEK[J]. CIRP Annals-Manufacturing Technol- ogy, 2007,56(1 ) : 205-208.
  • 5Wu W Z,Geng P,Zhao J,et al. Manufacture and thermal deformation analysis of semicrystalline polymer polyether ether ketone by 3D printing [J]. Materials Research Inno- vations, 2014,18 ($5) : $5-12-$5-6.
  • 6吴文征,赵继,姜振华,等.聚醚醚酮仿生人工骨的3D打印制造方法:中国2013106755640[P].2014-04-09.
  • 7Steven M,Kurtz Ph D. Peek biomaterials handbook [M]. William Andrew, 2012.
  • 8颜永年,张婷,张人佶,王小红,熊卓,林峰,李生杰.细胞及生物材料的成形制造技术[J].机械工程学报,2010,46(5):80-87. 被引量:9
  • 9吴任东,杨辉,张磊,胡川.组织工程支架快速成形技术研究现状[J].机械工程学报,2011,47(5):170-176. 被引量:13
  • 10Yaxiong Liu,Qin Lian,Jiankang He,Jinna Zhao,Zhongmin Jin,Dichen Li.Study on the Microstructure of Human Articular Cartilage/Bone Interface[J].Journal of Bionic Engineering,2011,8(3):251-262. 被引量:3

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