胡泽文, 金昕悦, 崔静静. 基于改进BP神经网络和函数拟合的细胞生物学领域“睡美人”识别与典型应用探测[J]. 情报学报, 2023, 42(6): 711-728.
Hu Zewen, Jin Xinyue, Cui Jingjing. Identifying “Sleeping Beauties” in Cell Biology and Exploring Their Classical Applications through an Improved BP Network and Function Fitting. 情报学报, 2023, 42(6): 711-728.
1 Li J, Shi D B, Zhao S X, et al. A study of the “heartbeat spectra” for“sleeping beauties”[J]. Journal of Informetrics, 2014, 8(3): 493-502. 2 Barber B. Resistance by scientists to scientific discovery[J]. Science, 1961, 134(3479): 596-602. 3 Garfield E. Bradford’s law and related statistical patterns[J]. Current Contents, 1980, 19: 5-12. 4 van Raan A F J. Sleeping beauties in science[J]. Scientometrics, 2004, 59(3): 467-472. 5 梁立明, 林晓锦, 钟镇, 等. 迟滞承认: 科学中的睡美人现象——以一篇被迟滞承认的超弦理论论文为例[J]. 自然辩证法通讯, 2009, 31(1): 39-45, 111. 6 Wang J C, Ma F C, Chen M J, et al. Why and how can “sleeping beauties” be awakened?[J]. Electronic Library, 2012, 30(1): 5-18. 7 Li J, Ye F Y. The phenomenon of all-elements-sleeping-beauties in scientific literature[J]. Scientometrics, 2012, 92(3): 795-799. 8 杜建. “睡美人”文献的识别方法与唤醒机制研究[D]. 南京: 南京大学, 2017. 9 Avramescu A. Actuality and obsolescence of scientific literature[J]. Journal of the American Society for Information Science, 1979, 30(5): 296-303. 10 Aversa E S. Citation patterns of highly cited papers and their relationship to literature aging: a study of the working literature[J]. Scientometrics, 1985, 7(3): 383-389. 11 Costas R, van Leeuwen T N, van Raan A F J. Is scientific literature subject to a ‘Sell-By-Date’? A general methodology to analyze the ‘durability’ of scientific documents[J]. Journal of the American Society for Information Science and Technology, 2010, 61(2): 329-339. 12 Li J. Citation curves of “all-elements-sleeping-beauties”: “flash in the pan” first and then “delayed recognition”[J]. Scientometrics, 2014, 100(2): 595-601. 13 Burrell Q L. Are “sleeping beauties” to be expected?[J]. Scientometrics, 2005, 65(3): 381-389. 14 Ohba N, Nakao K. Sleeping beauties in ophthalmology[J]. Scientometrics, 2012, 93(2): 253-264. 15 袁红, 杭培培. 不同学科领域“睡美人”论文的比较分析[J]. 情报资料工作, 2016, 35(2): 34-38. 16 Ke Q, Emilio F, Filippo R, et al. Defining and identifying sleeping beauties in science[J]. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112(24): 7426-7431. 17 杜建, 武夷山. 一个用于识别睡美人文献的新的无参数指标——基于“Science”和“Nature”上睡美人文献的验证[J]. 情报理论与实践, 2017, 40(2): 19-25. 18 Ye F Y, Bornmann L. “smart girls” versus “sleeping beauties” in the sciences: the identification of instant and delayed recognition by using the citation angle[J]. Journal of the Association for Information Science and Technology, 2018, 69(3): 359-367. 19 Wang J. Citation time window choice for research impact evaluation[J]. Scientometrics, 2013, 94(3): 851-872. 20 Hartley J, Ho Y S. Who woke the sleeping beauties in psychology?[J]. Scientometrics, 2017, 112(2): 1065-1068. 21 Dey R, Roy A, Chakraborty T, et al. Sleeping beauties in Computer Science: characterization and early identification[J]. Scientometrics, 2017, 113(3): 1645-1663. 22 Teixeira A A C, Vieira P C, Abreu A P. Sleeping beauties and their princes in innovation studies[J]. Scientometrics, 2017, 110(2): 541-580. 23 王海燕, 马峥, 高继平, 等. “睡美人”论文与领域主题演变关系研究——以信息安全技术领域睡美人论文为例[J]. 情报学报, 2018, 37(10): 989-996. 24 张慧, 叶鹰. 优质论文中的“天鹅群”及其“伴随睡美人”探析[J]. 情报学报, 2021, 40(6): 603-609. 25 侯剑华, 李昊, 张洋, 等. Altmetrics视角下科学睡美人的演化特征分析[J]. 情报学报, 2021, 40(9): 934-952. 26 Garfield E. More delayed recognition. Part 2. From inhibin to scanning electron microcopy[J]. Current Contents, 1990, 9: 3-9. 27 Gl?nzel W, Schlemmer B, Thijs B. Better late than never? On the chance to become highly cited only beyond the standard bibliometric time horizon[J]. Scientometrics, 2003, 58(3): 571-586. 28 Gl?nzel W, Garfield E. The myth of delayed recognition[J]. The Scientist, 2004, 18(11): 8-9. 29 胡泽文, 武夷山. 科技产出影响因素分析与预测研究——基于多元回归和BP神经网络的途径[J]. 科学学研究, 2012, 30(7): 992-1004. 30 宋呈玉, 李秀霞, 谢瑞霞, 等. 基于二次函数曲线拟合的睡美人文献识别研究[J]. 情报杂志, 2018, 37(6): 119-123, 207. 31 Sun J J, Min C, Li J. A vector for measuring obsolescence of scientific articles[J]. Scientometrics, 2016, 107(2): 745-757. 32 胡泽文, 屈静, 周西姬. 世界顶尖科学家获奖年龄与授奖时滞的周期演变特征——以诺贝尔奖得主为例[J]. 图书馆论坛, 2022, 42(12): 48-56. 33 胡泽文, 孙建军, 武夷山. 国内知识图谱应用研究综述[J]. 图书情报工作, 2013, 57(3): 131-137, 84. 34 祝清松, 冷伏海. 基于引文内容分析的高被引论文主题识别研究[J]. 中国图书馆学报, 2014, 40(1): 39-49. 35 莫富传, 娄策群. 高被引论文应用于研究热点识别的理论依据与路径探索[J]. 情报理论与实践, 2019, 42(4): 59-63, 35. 36 Moral-Munoz J A, Lucena-Antón D, Perez-Cabezas V, et al. Highly cited papers in microbiology: identification and conceptual analysis[J]. FEMS Microbiology Letters, 2018, 365(20): 555-568. 37 邹萍, 董颖, 李莘, 等. 科学知识图谱视角下国内外图情领域危机管理对比研究[J]. 情报科学, 2018, 36(12): 62-65. 38 张敏, 朱明星, 沈雪乐. 国际MIS学科领域研究热点及演化路径分析——基于10本国际权威期刊2004—2013年间的样本分析[J]. 情报杂志, 2015, 34(3): 93-99. 39 van Eck N J, Waltman L. VOSviewer manual[EB/OL]. (2022-01-24) [2022-05-21]. https://www.vosviewer.com/documentation/Manual_VOSviewer_1.6.18.pdf. 40 张垒. 论文高被引的参考文献特征及其对影响因子贡献研究[J]. 情报科学, 2016, 34(8): 94-98. 41 Kolle S R, Vijayashree M, Shankarappa T H. Highly cited articles in malaria research: a bibliometric analysis[J]. Collection Building, 2017, 36(2): 45-57. 42 常青. 情报学研究高被引论文的特征分析[J]. 情报资料工作, 2014, 35(4): 100-102. 43 叶协杰. 我国图书情报学高被引论文热点分析[J]. 图书情报工作, 2007, 51(12): 138-141. 44 Hu Z W, Lin A, Willett P. Identification of research communities in cited and uncited publications using a co-authorship network[J]. Scientometrics, 2019, 118(1): 1-19. 45 Hu Z W, Wu Y S. Regularity in the time-dependent distribution of the percentage of never-cited papers: an empirical pilot study based on the six journals[J]. Journal of Informetrics, 2014, 8(1): 136-146. 46 Hu Z W, Wu Y S, Sun J J. A quantitative analysis of determinants of non-citation using a panel data model[J]. Scientometrics, 2018, 116(2): 843-861. 47 Hu Z W, Wu Y S, Sun J J. A survey-based structural equation model analysis on influencing factors of non-citation[J]. Current Science, 2018, 114(11): 2302-2312.