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助理研究员/工程师

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李龙

李龙

工程师,硕士

研究领域:1) 3D打印技术研究与工艺开发; 2) 组织修复与替代的生物材料的材料学机制研究; 3) 新型骨修复产品开发与临床转化应用

邮箱:lilong@siat.ac.cn

  • 个人简介
  • 代表性项目
  • 代表性成果
  • 李龙,工程师,2014年毕业于北京航空航天大学,随后入职中国科学院深圳先进技术研究院至今。共主持医院及高校纵/横向联合项目7项,作为核心人员参与国家青年863计划、国家自然科学基金重大项目、国际合作等国家科技计以及深圳市技术攻关、基础研究等项目10余项,总涉及经费2000余万。在BiomaterialsRegenerative BiomaterialsJournal of Orthopaedic Translation等重要学术期刊以第一作者及参与发表SCI论文11篇,参与著作撰写1部,专利申请12项,授权6项,2017年荣获日内瓦发明银奖(排名第二)。

  • 更新中.......


  • 【授权专利情况】

    1】发明专利:3D打印方法,

    发明人:赖毓霄,李龙,秦岭,王新峦,张鹏

    授权公告日:2017.11.21

    2】发明专利: 3D打印设备和基于3D打印的物料供给搅拌系统

    发明人:赖毓霄,李龙,秦岭,王新峦,张鹏

    授权公告日:2019.05.31

    3】发明专利: 3D打印喷头及智能控制3D打印喷头装置

    发明人:赖毓霄,李龙,秦岭,王新峦,张鹏

    授权公告日:2019.08.09

    4】实用新型:3D打印设备和基于3D打印的物料供给搅拌系统

    发明人:赖毓霄,李龙,秦岭,王新峦,张鹏

    授权公告日:2016.01.20

    5】实用新型:3D打印喷头及智能控制3D打印喷头装置

    发明人:赖毓霄,李龙,秦岭,王新峦,张鹏

    授权公告日:2017.09.12

    6】实用新型:一种制备异质异构骨修复支架的3D打印装置

    发明人:赖毓霄,李龙,秦岭

    授权公告日:2019.08.23

     

    【论文发表情况】

    1)        Long Li#, Ming Zhang, Ye Li, Jie Zhao, Ling Qin and Yuxiao Lai. Corrosion and biocompatibility improvement of magnesium-based alloys as bone implant materials: a review. Regenerative Biomaterials. 201742:129-137. IF=3.33

    2)        Long Li#, Long Bai, Qingqing Zhang, Tietao Zhou, Bing ChenCorrosion behaviours of novel Mg–13Li–X alloy fabricated by rapid solidification process. Materials Research Innovations. 2014,18:695-700.( IF=0.83)

    3)        Rui Ma, Yuxiao Lai(共同第一), Long Li, Honglue Tan, Jiali Wang, Ye Li, Ting-ting Tang &Ling Qin. Bacterial inhibition potential of 3D rapid-prototyped magnesium-based porous composite scaffolds–an in vitro efficacy study. Scientific Reports. 20155:13775. (IF=4.61).

    4)        Long Bai, Long Li, Bing Chen, Tietao Zhou, Heat treatment and plastic deformation in Al3Ti particle reinforced 7050 aluminium alloy matrix composites. Materials Research Innovations. 2014,18: 235 -238. ( IF=0.83)

    5)        Ye Li , ShuKui Chen, Long Li, Ling Qin, XinLuan Wang, YuXiao Lai.Bone defect animal models for testing efficacy of bone substitute biomaterials. Journal of Orthopaedic Translation. 20153(3):95-104. (IF=2.08)

    6)        Ling Li, Jing Long, Long Li, Huijuan Cao, Tingting Tang, Xinghua Xi, Ling Qin, Yuxiao Lai, Xinluan Wang. Quantitative determination of residual 1,4-dioxane in three-dimensional printed bone scaffold. Journal of Orthopaedic Translation. 2017. (IF=2.08)

    7)        Jianghong Huang, Wei Liu, Yujie Liang, Long Li, Li Duan, Jielin Chen, Feiyan Zhu, Yuxiao Lai, Weimin Zhu, Wei You, ZhaoFeng Jia, Jianyi Xiong, Daping Wang. Preparation and biocompatibility of diphasic magnetic nanocomposite scaffold. Materials Science & Engineering C. 2018, 87:70–77. (IF=5.08 )

    8)        Yuanyuan Xu, Xiao Guo, Shuaitao Yang, Long Li, Peng Zhang, Wei Sun, Changyong Liu, Shengli Mi. Construction of bionic tissue engineering cartilage scaffold based onthree-dimensional printing and oriented frozen technology. Journal of Biomedical Material Research Part A. 2018. (IF=3.24).

    9)        Lai, Yuxiao; Li, Ye; Cao, Huijuan; Long, Jing; Wang, Xinluan; Li, Long; Li, Cairong; Jia, Qingyun; Teng, Bin; Tang, Tingting; Peng, Jiang; Eglin, David; Alini, Mauro; Grijpma, Dirk W; Richards, Geoff; Qin, Ling. Osteogenic magnesium incorporated into PLGA/TCP porous scaffold by 3D printing for repairing challenging bone defect. Biomaterials. 2019 (197): 207-219.(IF=8.81) 

    10)      Yufei Ma, Nan Hu, Juan Liu, Xinyun Zhai, Mingming Wu, Chengshen Hu, Long Li, Yuxiao Lai, Haobo Pan, William Weijia Lu, Xinzhou Zhang, Yanfeng Luo, Changshun Ruan. Three-Dimensional Printing of Biodegradable Piperazine-Based Polyurethane-Urea Scaffolds with Enhanced Osteogenesis for Bone Regeneration. ACS Applied Materials & Interfaces.2019. ( IF 8.097 )

    11)     Wen Yu, Rui Li, Jing Long, Peng Chen, Angyang Hou, Long Li, Xun Sun, Guoquan Zheng, Haoye Meng,YuWang, Aiyuan Wang, Xiang Sui, Quanyi Guo, Sheng Tao, Jiang Peng, Ling Qin, Shibi Lu, Yuxiao Lai. Use of a three-dimensional printed polylactide-coglycolide/tricalcium phosphate composite scaffold incorporating magnesium powder to enhance bone defect repair in rabbits. Journal of Orthopaedic Translation, 2018.(IF=2.08)



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