缩写名/全名 |
BIOFABRICATION
Biofabrication |
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ISSN号 | 1758-5082 | ||||||||||||||||||||||||||||||||
研究方向 | ENGINEERING, BIOMEDICAL-MATERIALS SCIENCE, BIOMATERIALS | ||||||||||||||||||||||||||||||||
影响因子 | 2015:4.702, 2016:5.24, 2017:6.838, 2018:7.236, 2019:8.213, | ||||||||||||||||||||||||||||||||
出版国家 | ENGLAND | ||||||||||||||||||||||||||||||||
出版周期 | |||||||||||||||||||||||||||||||||
年文章数 | 100 | ||||||||||||||||||||||||||||||||
出版年份 | 2009 | ||||||||||||||||||||||||||||||||
是否OA | No | ||||||||||||||||||||||||||||||||
审稿周期(仅供参考) | >12周,或约稿 |
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投稿链接 | https://mc04.manuscriptcentral.com/bf-iop | ||||||||||||||||||||||||||||||||
投稿官网 | http://iopscience.iop.org/journal/1758-5090 | ||||||||||||||||||||||||||||||||
h-index | 58 | ||||||||||||||||||||||||||||||||
CiteScore |
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PubMed Central (PMC)链接 | http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1758-5082%5BISSN%5D | ||||||||||||||||||||||||||||||||
中科院SCI期刊分区 ( 2018年新版本) |
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中科院SCI期刊分区 ( 2020年新版本) |
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中国学者近期发表的论文 | |
1. | Role and mechanisms of a three-dimensional bioprinted microtissue model in promoting proliferation and invasion of growth-hormone-secreting pituitary adenoma cells. Author: Diao J1, Zhang C, Zhang D, Wang X, Zhang J, Ma C, Deng K, Jiang T, Jia W, Xu T. Journal: Biofabrication. 2019 Feb 5;11(2):025006. doi: 10.1088/1758-5090/aaf7ea. PubMed DOI |
2. | Programmable higher-order biofabrication of self-locking microencapsulation. Author: Liu Y1, Wu C, Lu H, Yang Y, Li W, Shen Y. Journal: Biofabrication. 2019 May 8;11(3):035019. doi: 10.1088/1758-5090/aafd14. PubMed DOI |
3. | Incorporation of cerium oxide in hollow mesoporous bioglass scaffolds for enhanced bone regeneration by activating the ERK signaling pathway. Author: Lu B1, Zhu DY, Yin JH, Xu H, Zhang CQ, Ke QF, Gao YS, Guo YP. Journal: Biofabrication. 2019 Mar 28;11(2):025012. doi: 10.1088/1758-5090/ab0676. PubMed DOI |
4. | 3D printing of complex GelMA-based scaffolds with nanoclay. Author: Gao Q1, Niu X, Shao L, Zhou L, Lin Z, Sun A, Fu J, Chen Z, Hu J, Liu Y, He Y. Journal: Biofabrication. 2019 Apr 5;11(3):035006. doi: 10.1088/1758-5090/ab0cf6. PubMed DOI |
5. | Structural mechanics of 3D-printed poly(lactic acid) scaffolds with tetragonal, hexagonal and wheel-like designs. Author: Liang X1, Gao J, Xu W, Wang X, Shen Y, Tang J, Cui S, Yang X, Liu Q, Yu L, Ding J. Journal: Biofabrication. 2019 Apr 26;11(3):035009. doi: 10.1088/1758-5090/ab0f59. PubMed DOI |
6. | Biomimetic design and fabrication of scaffolds integrating oriented micro-pores with branched channel networks for myocardial tissue engineering. Author: Fang Y1, Zhang T, Zhang L, Gong W, Sun W. Journal: Biofabrication. 2019 Apr 5;11(3):035004. doi: 10.1088/1758-5090/ab0fd3. PubMed DOI |
7. | Multi-level customized 3D printing for autogenous implants in skull tissue engineering. Author: Chen H1, Zhang J2, Li X3, Liu L4, Zhang X5, Ren D6, Ma C7, Zhang L8, Fei Z9, Xu T10. Journal: Biofabrication. 2019 Mar 27. doi: 10.1088/1758-5090/ab1400. [Epub ahead of print] PubMed DOI |
8. | Cryogenic free-form extrusion bioprinting of decellularized small intestinal submucosa for potential applications in skin tissue engineering. Author: Shi L1, Hu Y2, Ullah MW3, Ullah I1, Ou H1, Zhang W4, Xiong L5, Zhang X6. Journal: Biofabrication. 2019 Apr 3. doi: 10.1088/1758-5090/ab15a9. [Epub ahead of print] PubMed DOI |
9. | Engineering three-dimensional microenvironments towards <i>in vitro</i> disease models of the central nervous system. Author: Yildirimer L1, Zhang Q2, Kuang S3, Cheung CJ2, Chu KA4, He Y5, Yang M2, Zhao X6. Journal: Biofabrication. 2019 Apr 9. doi: 10.1088/1758-5090/ab17aa. [Epub ahead of print] PubMed DOI |
10. | Engineered tissue micro-rings fabricated from aggregated fibroblasts and microfibers for bottom-up tissue engineering approach. Author: Sun T1, Shi Q2, Yao Y3, Sun J3, Wang H4, Huang Q5, Fukuda T2. Journal: Biofabrication. 2019 May 2. doi: 10.1088/1758-5090/ab1ee5. [Epub ahead of print] PubMed DOI |
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