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Citation concept analysis (CCA): a new form of citation analysis revealing the usefulness of concepts for other researchers illustrated by exemplary case studies including classic books by Thomas S. Kuhn and Karl R. Popper

Author

Listed:
  • Lutz Bornmann

    (Administrative Headquarters of the Max Planck Society)

  • K. Brad Wray

    (Aarhus University)

  • Robin Haunschild

    (Max Planck Institute for Solid State Research)

Abstract

In recent years, the full text of papers are increasingly available electronically which opens up the possibility of quantitatively investigating citation contexts in more detail. In this study, we introduce a new form of citation analysis, which we call citation concept analysis (CCA). CCA is intended to reveal the cognitive impact certain concepts—published in a highly-cited landmark publication—have on the citing authors. It counts the number of times the concepts are mentioned (cited) in the citation context of citing publications. We demonstrate the method using three classical highly cited books: (1) The structure of scientific revolutions by Thomas S. Kuhn, (2) The logic of scientific discovery—Logik der Forschung: Zur Erkenntnistheorie der modernen Naturwissenschaft in German—, and (3) Conjectures and refutations: the growth of scientific knowledge by Karl R. Popper. It is not surprising—as our results show—that Kuhn’s “paradigm” concept seems to have had a significant impact. What is surprising is that our results indicate a much larger impact of the concept “paradigm” than Kuhn’s other concepts, e.g., “scientific revolution”. The paradigm concept accounts for about 40% of the concept-related citations to Kuhn’s work, and its impact is resilient across all disciplines and over time. With respect to Popper, “falsification” is the most used concept derived from his books. Falsification is the cornerstone of Popper’s critical rationalism.

Suggested Citation

  • Lutz Bornmann & K. Brad Wray & Robin Haunschild, 2020. "Citation concept analysis (CCA): a new form of citation analysis revealing the usefulness of concepts for other researchers illustrated by exemplary case studies including classic books by Thomas S. K," Scientometrics, Springer;Akadémiai Kiadó, vol. 122(2), pages 1051-1074, February.
  • Handle: RePEc:spr:scient:v:122:y:2020:i:2:d:10.1007_s11192-019-03326-2
    DOI: 10.1007/s11192-019-03326-2
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    References listed on IDEAS

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    1. Henry Small & Kevin W. Boyack & Richard Klavans, 2019. "Citations and certainty: a new interpretation of citation counts," Scientometrics, Springer;Akadémiai Kiadó, vol. 118(3), pages 1079-1092, March.
    2. Sven E. Hug & Martin P. Brändle, 2017. "The coverage of Microsoft Academic: analyzing the publication output of a university," Scientometrics, Springer;Akadémiai Kiadó, vol. 113(3), pages 1551-1571, December.
    3. V. Cano, 1989. "Citation behavior: Classification, utility, and location," Journal of the American Society for Information Science, Association for Information Science & Technology, vol. 40(4), pages 284-290, July.
    4. Iman Tahamtan & Lutz Bornmann, 2019. "What do citation counts measure? An updated review of studies on citations in scientific documents published between 2006 and 2018," Scientometrics, Springer;Akadémiai Kiadó, vol. 121(3), pages 1635-1684, December.
    5. Björn Hammarfelt, 2011. "Citation analysis on the micro level: The example of Walter Benjamin's Illuminations," Journal of the American Society for Information Science and Technology, Association for Information Science & Technology, vol. 62(5), pages 819-830, May.
    6. Björn Hammarfelt, 2011. "Citation analysis on the micro level: The example of Walter Benjamin's Illuminations," Journal of the Association for Information Science & Technology, Association for Information Science & Technology, vol. 62(5), pages 819-830, May.
    7. Haunschild, Robin & Schier, Hermann & Marx, Werner & Bornmann, Lutz, 2018. "Algorithmically generated subject categories based on citation relations: An empirical micro study using papers on overall water splitting," Journal of Informetrics, Elsevier, vol. 12(2), pages 436-447.
    8. Boyack, Kevin W. & van Eck, Nees Jan & Colavizza, Giovanni & Waltman, Ludo, 2018. "Characterizing in-text citations in scientific articles: A large-scale analysis," Journal of Informetrics, Elsevier, vol. 12(1), pages 59-73.
    9. Anton Kühberger & Astrid Fritz & Thomas Scherndl, 2014. "Publication Bias in Psychology: A Diagnosis Based on the Correlation between Effect Size and Sample Size," PLOS ONE, Public Library of Science, vol. 9(9), pages 1-8, September.
    10. Ben Jann, 2005. "Tabulation of multiple responses," Stata Journal, StataCorp LP, vol. 5(1), pages 93-122, March.
    11. Eugenio Petrovich, 2018. "Accumulation of knowledge in para-scientific areas: the case of analytic philosophy," Scientometrics, Springer;Akadémiai Kiadó, vol. 116(2), pages 1123-1151, August.
    12. Chen, Chaomei & Song, Min & Heo, Go Eun, 2018. "A scalable and adaptive method for finding semantically equivalent cue words of uncertainty," Journal of Informetrics, Elsevier, vol. 12(1), pages 158-180.
    13. Donald O. Case & Georgeann M. Higgins, 2000. "How can we investigate citation behavior? A study of reasons for citing literature in communication," Journal of the American Society for Information Science, Association for Information Science & Technology, vol. 51(7), pages 635-645.
    14. Marc Bertin & Iana Atanassova & Cassidy R. Sugimoto & Vincent Lariviere, 2016. "The linguistic patterns and rhetorical structure of citation context: an approach using n-grams," Scientometrics, Springer;Akadémiai Kiadó, vol. 109(3), pages 1417-1434, December.
    15. Small, Henry, 2018. "Characterizing highly cited method and non-method papers using citation contexts: The role of uncertainty," Journal of Informetrics, Elsevier, vol. 12(2), pages 461-480.
    16. Tahamtan, Iman & Bornmann, Lutz, 2018. "Core elements in the process of citing publications: Conceptual overview of the literature," Journal of Informetrics, Elsevier, vol. 12(1), pages 203-216.
    17. K. Brad Wray & Lutz Bornmann, 2015. "Philosophy of science viewed through the lense of “Referenced Publication Years Spectroscopy” (RPYS)," Scientometrics, Springer;Akadémiai Kiadó, vol. 102(3), pages 1987-1996, March.
    18. Sven E. Hug & Michael Ochsner & Martin P. Brändle, 2017. "Citation analysis with microsoft academic," Scientometrics, Springer;Akadémiai Kiadó, vol. 111(1), pages 371-378, April.
    19. Solomon, Gregg E.A. & Youtie, Jan & Carley, Stephen & Porter, Alan L., 2019. "What people learn about how people learn: An analysis of citation behavior and the multidisciplinary flow of knowledge," Research Policy, Elsevier, vol. 48(9), pages 1-1.
    20. Small, Henry & Tseng, Hung & Patek, Mike, 2017. "Discovering discoveries: Identifying biomedical discoveries using citation contexts," Journal of Informetrics, Elsevier, vol. 11(1), pages 46-62.
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    Cited by:

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    6. Naif Radi Aljohani & Ayman Fayoumi & Saeed-Ul Hassan, 2021. "An in-text citation classification predictive model for a scholarly search system," Scientometrics, Springer;Akadémiai Kiadó, vol. 126(7), pages 5509-5529, July.

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