Comparative study on methods of detecting research fronts using different types of citation
暂无分享,去创建一个
Naoki Shibata | Yoshiyuki Takeda | Yuya Kajikawa | Katsumori Matsushima | Y. Kajikawa | N. Shibata | Y. Takeda | Yoshiyuki Takeda | K. Matsushima | Naoki Shibata
[1] Yoshiyuki Takeda,et al. Detecting emerging research fronts based on topological measures in citation networks of scientific publications , 2008 .
[2] Loet Leydesdorff,et al. Betweenness centrality as an indicator of the interdisciplinarity of scientific journals , 2007, J. Assoc. Inf. Sci. Technol..
[3] Yuya Kajikawa,et al. Topological analysis of citation networks to discover the future core articles: Research Articles , 2007 .
[4] Naoki Shibata,et al. Topological analysis of citation networks to discover the future core articles , 2007, J. Assoc. Inf. Sci. Technol..
[5] Loet Leydesdorff,et al. Mapping interdisciplinarity at the interfaces between the Science Citation Index and the Social Science Citation Index , 2007, Scientometrics.
[6] Henry G. Small,et al. Tracking and predicting growth areas in science , 2006, Scientometrics.
[7] Kevin W. Boyack,et al. Identifying a better measure of relatedness for mapping science , 2006, J. Assoc. Inf. Sci. Technol..
[8] Henry G. Small,et al. Update on science mapping: Creating large document spaces , 1997, Scientometrics.
[9] Loet Leydesdorff,et al. Betweenness Centrality" as an Indicator of the , 2006 .
[10] Jonathan Adams,et al. Early citation counts correlate with accumulated impact , 2005, Scientometrics.
[11] Chaomei Chen,et al. Measuring the movement of a research paradigm , 2005, IS&T/SPIE Electronic Imaging.
[12] Romualdas Karazija,et al. The Nobel prize in physics - regularities and tendencies , 2004, Scientometrics.
[13] Bart Selman,et al. Tracking evolving communities in large linked networks , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[14] Eugene Garfield,et al. Historiographic Mapping of Knowledge Domains Literature , 2004, J. Inf. Sci..
[15] M. Newman. Fast algorithm for detecting community structure in networks. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.
[16] Leo Egghe,et al. Co-citation, bibliographic coupling and a characterization of lattice citation networks , 2002, Scientometrics.
[17] Yong Fang,et al. Lattices in citation networks: An investigation into the structure of citation graphs , 2001, Scientometrics.
[18] Tibor Braun,et al. No-bells for ambiguous lists of ranked Nobelists as science indicators of national merit in physics, chemistry and medicine, 1901-2001 , 2004, Scientometrics.
[19] Martin Suter,et al. Small World , 2002 .
[20] E. Karlsson. The Nobel Prize in Physics , 2001 .
[21] Duncan J. Watts,et al. Collective dynamics of ‘small-world’ networks , 1998, Nature.
[22] Ronald N. Kostoff,et al. Database tomography for information retrieval , 1997, J. Inf. Sci..
[23] Loet Leydesdorff,et al. Mapping Change in Scientific Specialties: A Scientometric Reconstruction of the Development of Artificial Intelligence , 1996, J. Am. Soc. Inf. Sci..
[24] Henk F. Moed,et al. Mapping of Science by Combined Co-Citation and Word Analysis. I. Structural Aspects , 1991 .
[25] B. C. Griffith,et al. The Structure of Scientific Literatures I: Identifying and Graphing Specialties , 1974 .
[26] Henry G. Small,et al. Co-citation in the scientific literature: A new measure of the relationship between two documents , 1973, J. Am. Soc. Inf. Sci..
[27] E. Garfield. Citation analysis as a tool in journal evaluation. , 1972, Science.
[28] Samuel Schiminovich. Automatic classification and retrieval of documents by means of a bibliographic pattern discovery algorithm , 1971, Inf. Storage Retr..
[29] D J PRICE,et al. NETWORKS OF SCIENTIFIC PAPERS. , 1965, Science.
[30] M. M. Kessler. Bibliographic coupling between scientific papers , 1963 .