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Database tomography for technical intelligence: Comparative roadmaps of the research impact assessment literature and the journal of the American Chemical Society

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Abstract

This paper shows how Database Tomgraphy can be used to derive technical intelligence from the published literature. Database Tomography is a patented system for analyzing large amounts of textual computerized material. It includes algorithms for extracting multi-word phrase frequencies and performing phrase proximity analyses. Phrase frequency analysis provides the pervasive themes of a database, and the phrase proximity analysis provides the relationships among the pervasive themes, and between the pervasive themes and sub-themes. One potential application of Database Tomography is to obtain the thrusts and interrelationships of a technical field from papers published in the literature within that field. This paper provides applications of Database Tomography to analyses of both the non-technical field of Research Impact Assessment (RIA) and the technical field of Chemistry. A database of relevant RIA articles was analyzed to produce characteristics and key features of the RIA field. The recent prolific RIA authors, the journals prolific in RIA papers, the prolific institutions in RIA, the prolific keywords specified by the authors, and the authors whose works are cited most prolifically as well as the particular papers/journals/institutions cited most prolifically, are identified. The pervasive themes of RIA are identified through multi-word phrase of the database. A phrase proximity analysis of the database shows the relationships among the pervasive themes, and the relationships between the pervasive themes and subthemes. A similar process was applied to Chemistry, with the exception that the database was limited to one year's issues of the Journal of the American Chemical Society. Wherever possible, the RIA and Chemistry results were compared. Finally, the conceptual use of Database Tomography to help identify promising research directions was discussed.

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References

  1. R. N. Kostoff et al., “System and Method for Database Tomography”, U.S. Patent Number 5440481, August 8, 1995.

  2. R. N. Kostoff, Database tomography: Multidisciplinary research thrusts from co-word analysis,Proceedings: Portland International Conference on Management of Engineering and Technology, October 27–31, 1991.

  3. R. N. Kostoff, Database tomography for technical intelligence,Proceedings: Eighth Annual Conference of the Society for Competitive Intelligence Professionals, Los Angeles, CA, 1993.

  4. R. N. Kostoff, Database tomography for technical intelligence,Competitive Intelligence Review, 4:1, Spring 1993.

  5. R. N. Kostoff, Database tomography: Origins and applications,Competitive Intelligence Review, Special Issue on Technology, 5. 1 Spring 1994.

  6. R. N. Kostoff, Research performance effectiveness and impact, Chapter 31, In:G. H. Gaynor, (Ed.),Handbook of Technology Management, McGraw-Hill, Inc., 1996.

  7. R. N. Kostoff, Federal research impact assessment: Axioms, approaches, applications,Scientometrics 34 (1995), 163–206.

    Article  Google Scholar 

  8. R. N. Kostoff,The Handbook of Research Impact Assessment, Fifth Edition, Summer 1995, DTIC Report Number ADA296021.

  9. R. N. Kostoff, H. J. Eberhart, D. R. Toothman, Database tomography for information retrieval,Journal of Information Science, 23:4, 1997.

    Article  Google Scholar 

  10. D. R. Swanson, Fish oil, Raynaud's syndrome, and undiscovered public knowledge,Perspectives in Biology and Medicine, 30:1, 1986.

    Google Scholar 

  11. M. D. Gordon, R. K. Lindsay, Toward discovery support systems: A replication, re-examination, and extension of Swanson's work on literature-based discovery of a connection between Raynaud's and fish oil,JASIS, 47:2, February 1996.

    Article  Google Scholar 

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Kostoff, R.N., Eberhart, H.J., Toothman, D.R. et al. Database tomography for technical intelligence: Comparative roadmaps of the research impact assessment literature and the journal of the American Chemical Society. Scientometrics 40, 103–138 (1997). https://doi.org/10.1007/BF02459264

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  • DOI: https://doi.org/10.1007/BF02459264

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