How are journal impact, prestige and article influence related? An application to neuroscience
The paper analyzes the leading journals in neurosciences using quantifiable research assessment measures (RAM), highlights the similarities and differences in alternative RAM, shows that several RAM capture similar performance characteristics of highly cited journals, and shows that some other RAM h...
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Published in | Journal of Applied Statistics Vol. 38; no. 11; pp. 2563 - 2573 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Abingdon
Taylor & Francis
01.11.2011
Informa UK Limited Taylor and Francis Journals Taylor & Francis Ltd |
Series | Journal of Applied Statistics |
Subjects | |
Online Access | Get full text |
ISSN | 0266-4763 1360-0532 |
DOI | 10.1080/02664763.2011.559212 |
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Abstract | The paper analyzes the leading journals in neurosciences using quantifiable research assessment measures (RAM), highlights the similarities and differences in alternative RAM, shows that several RAM capture similar performance characteristics of highly cited journals, and shows that some other RAM have low correlations with each other, and hence add significant informational value. Alternative RAM are discussed for the Thomson Reuters ISI Web of Science database (hereafter ISI). The RAM that are calculated annually or updated daily include the classic 2-year impact factor (2YIF), 5-year impact factor, immediacy (or zero-year impact factor), Eigenfactor score, article influence score, C3PO (citation performance per paper online), h-index, Zinfluence, PI-BETA (papers ignored by even the authors), 2-year and historical self-citation threshold approval ratings, impact factor inflation, and cited article influence (CAI). The RAM are analyzed for 26 highly cited journals in the ISI category of neurosciences. The paper finds that the Eigenfactor score and PI-BETA are not highly correlated with the other RAM scores, so that they convey additional information regarding journal rankings, that article influence is highly correlated with some existing RAM, so that it has little informative incremental value, and that CAI has additional informational value to that of article influence. Harmonic mean rankings of the 13 RAM criteria for the 26 highly cited journals are also presented. Emphasizing the 2YIF of a journal to the exclusion of other informative RAM criteria is shown to lead to a distorted evaluation of journal performance and influence, especially given the informative value of several other RAM. |
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AbstractList | The paper analyzes the leading journals in neurosciences using quantifiable research assessment measures (RAM), highlights the similarities and differences in alternative RAM, shows that several RAM capture similar performance characteristics of highly cited journals, and shows that some other RAM have low correlations with each other, and hence add significant informational value. Alternative RAM are discussed for the Thomson Reuters ISI Web of Science database (hereafter ISI). The RAM that are calculated annually or updated daily include the classic 2-year impact factor (2YIF), 5-year impact factor, immediacy (or zero-year impact factor), Eigenfactor score, article influence score, C3PO (citation performance per paper online), h-index, Zinfluence, PI-BETA (papers ignored by even the authors), 2-year and historical self-citation threshold approval ratings, impact factor inflation, and cited article influence (CAI). The RAM are analyzed for 26 highly cited journals in the ISI category of neurosciences. The paper finds that the Eigenfactor score and PI-BETA are not highly correlated with the other RAM scores, so that they convey additional information regarding journal rankings, that article influence is highly correlated with some existing RAM, so that it has little informative incremental value, and that CAI has additional informational value to that of article influence. Harmonic mean rankings of the 13 RAM criteria for the 26 highly cited journals are also presented. Emphasizing the 2YIF of a journal to the exclusion of other informative RAM criteria is shown to lead to a distorted evaluation of journal performance and influence, especially given the informative value of several other RAM. The paper analyzes the leading journals in neurosciences using quantifiable research assessment measures (RAM), highlights the similarities and differences in alternative RAM, shows that several RAM capture similar performance characteristics of highly cited journals, and shows that some other RAM have low correlations with each other, and hence add significant informational value. Alternative RAM are discussed for the Thomson Reuters ISI Web of Science database (hereafter ISI). The RAM that are calculated annually or updated daily include the classic 2-year impact factor (2YIF), 5-year impact factor, immediacy (or zero-year impact factor), Eigenfactor score, article influence score, C3PO (citation performance per paper online), h-index, Zinfluence, PI-BETA (papers ignored by even the authors), 2-year and historical self-citation threshold approval ratings, impact factor inflation, and cited article influence (CAI). The RAM are analyzed for 26 highly cited journals in the ISI category of neurosciences. The paper finds that the Eigenfactor score and PI-BETA are not highly correlated with the other RAM scores, so that they convey additional information regarding journal rankings, that article influence is highly correlated with some existing RAM, so that it has little informative incremental value, and that CAI has additional informational value to that of article influence. Harmonic mean rankings of the 13 RAM criteria for the 26 highly cited journals are also presented. Emphasizing the 2YIF of a journal to the exclusion of other informative RAM criteria is shown to lead to a distorted evaluation of journal performance and influence, especially given the informative value of several other RAM. [PUBLICATION ABSTRACT] |
Author | Chang, Chia-Lin McAleer, Michael Oxley, Les |
Author_xml | – sequence: 1 givenname: Chia-Lin surname: Chang fullname: Chang, Chia-Lin organization: Department of Applied Economics , National Chung Hsing University – sequence: 2 givenname: Michael surname: McAleer fullname: McAleer, Michael organization: Institute for Economic Research; Kyoto University – sequence: 3 givenname: Les surname: Oxley fullname: Oxley, Les email: lesoxley@gmail.com organization: Department of Economics and Finance , University of Canterbury |
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Cites_doi | 10.1523/JNEUROSCI.0003-08.2008 10.1136/bmj.314.7079.497 10.1073/pnas.0903307106 10.5860/crln.68.5.7804 10.1073/pnas.0507655102 |
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SubjectTerms | 1203.12 Bancos de Datos 2490 Neurociencias article influence Bases de datos Bases de datos (Biblioteconomía y Documentación) C3PO C3PO, IFI, PI-BETA, STAR, article Influence, cited article influence, eigenfactor, h-index, immediacy, impact factor, prestige, zinfluence Citation analysis Cited Article influence Correlation analysis Eigenfactor Eigenvalues EUR ESE 31 h-index IFI Immediacy Impact factor Impact factor, Prestige, Immediacy, Eigenfactor, Article Influence, h-index, C3PO, Zinfluence, PI-BETA, STAR, IFI, Cited Article influence Impact factors Internet Nervous system Neurociencias Neurociencias (Medicina) Neurosciences PI-BETA prestige Recuperación de la información STAR Statistics Studies Zinfluence |
Title | How are journal impact, prestige and article influence related? An application to neuroscience |
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