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  • 2019-2023
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  • Open Access English
    Authors: 
    Kun Sun; Haitao Liu; Wenxin Xiong;
    Project: EC | WIDE (742545)

    AbstractScientific writings, as one essential part of human culture, have evolved over centuries into their current form. Knowing how scientific writings evolved is particularly helpful in understanding how trends in scientific culture developed. It also allows us to better understand how scientific culture was interwoven with human culture generally. The availability of massive digitized texts and the progress in computational technologies today provide us with a convenient and credible way to discern the evolutionary patterns in scientific writings by examining the diachronic linguistic changes. The linguistic changes in scientific writings reflect the genre shifts that took place with historical changes in science and scientific writings. This study investigates a general evolutionary linguistic pattern in scientific writings. It does so by merging two credible computational methods: relative entropy; word-embedding concreteness and imageability. It thus creates a novel quantitative methodology and applies this to the examination of diachronic changes in the Philosophical Transactions of Royal Society (PTRS, 1665–1869). The data from two computational approaches can be well mapped to support the argument that this journal followed the evolutionary trend of increasing professionalization and specialization. But it also shows that language use in this journal was greatly influenced by historical events and other socio-cultural factors. This study, as a “culturomic” approach, demonstrates that the linguistic evolutionary patterns in scientific discourse have been interrupted by external factors even though this scientific discourse would likely have cumulatively developed into a professional and specialized genre. The approaches proposed by this study can make a great contribution to full-text analysis in scientometrics.

  • Open Access
    Authors: 
    Stefano Mammola; Diego Fontaneto; Alejandro Martínez; Filipe Chichorro;
    Publisher: Springer Science and Business Media LLC
    Countries: Finland, Italy
    Project: WT | Understanding the genetic... (090532), NIH | Data Mgmt &Analysis Core ... (5U01NS069208-02), NIH | Randomized Clinical Trial... (1U01HG005157-01), NIH | A Center for GEI Associat... (5U01HG004424-02), NIH | CORE--ADIPOSE TISSUE BIOL... (5P30DK072488-02), NIH | THE BALTIMORE LONGITUDINA... (1Z01AG000015-30), NIH | Genetics of Early Onset-S... (5R01NS045012-02), EC | GEUVADIS (261123), NIH | Genome Wide Association C... (5U01HG004446-04), NIH | Research Training in the ... (2T32AG000262-06),...

    AbstractMany believe that the quality of a scientific publication is as good as the science it cites. However, quantifications of how features of reference lists affect citations remain sparse. We examined seven numerical characteristics of reference lists of 50,878 research articles published in 17 ecological journals between 1997 and 2017. Over this period, significant changes occurred in reference lists’ features. On average, more recent papers have longer reference lists and cite more high Impact Factor papers and fewer non-journal publications. We also show that highly cited articles across the ecological literature have longer reference lists, cite more recent and impactful references, and include more self-citations. Conversely, the proportion of ‘classic’ papers and non-journal publications cited, as well as the temporal span of the reference list, have no significant influence on articles’ citations. From this analysis, we distill a recipe for crafting impactful reference lists, at least in ecology.

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The following results are related to Digital Humanities and Cultural Heritage. Are you interested to view more results? Visit OpenAIRE - Explore.
2 Research products, page 1 of 1
  • Open Access English
    Authors: 
    Kun Sun; Haitao Liu; Wenxin Xiong;
    Project: EC | WIDE (742545)

    AbstractScientific writings, as one essential part of human culture, have evolved over centuries into their current form. Knowing how scientific writings evolved is particularly helpful in understanding how trends in scientific culture developed. It also allows us to better understand how scientific culture was interwoven with human culture generally. The availability of massive digitized texts and the progress in computational technologies today provide us with a convenient and credible way to discern the evolutionary patterns in scientific writings by examining the diachronic linguistic changes. The linguistic changes in scientific writings reflect the genre shifts that took place with historical changes in science and scientific writings. This study investigates a general evolutionary linguistic pattern in scientific writings. It does so by merging two credible computational methods: relative entropy; word-embedding concreteness and imageability. It thus creates a novel quantitative methodology and applies this to the examination of diachronic changes in the Philosophical Transactions of Royal Society (PTRS, 1665–1869). The data from two computational approaches can be well mapped to support the argument that this journal followed the evolutionary trend of increasing professionalization and specialization. But it also shows that language use in this journal was greatly influenced by historical events and other socio-cultural factors. This study, as a “culturomic” approach, demonstrates that the linguistic evolutionary patterns in scientific discourse have been interrupted by external factors even though this scientific discourse would likely have cumulatively developed into a professional and specialized genre. The approaches proposed by this study can make a great contribution to full-text analysis in scientometrics.

  • Open Access
    Authors: 
    Stefano Mammola; Diego Fontaneto; Alejandro Martínez; Filipe Chichorro;
    Publisher: Springer Science and Business Media LLC
    Countries: Finland, Italy
    Project: WT | Understanding the genetic... (090532), NIH | Data Mgmt &Analysis Core ... (5U01NS069208-02), NIH | Randomized Clinical Trial... (1U01HG005157-01), NIH | A Center for GEI Associat... (5U01HG004424-02), NIH | CORE--ADIPOSE TISSUE BIOL... (5P30DK072488-02), NIH | THE BALTIMORE LONGITUDINA... (1Z01AG000015-30), NIH | Genetics of Early Onset-S... (5R01NS045012-02), EC | GEUVADIS (261123), NIH | Genome Wide Association C... (5U01HG004446-04), NIH | Research Training in the ... (2T32AG000262-06),...

    AbstractMany believe that the quality of a scientific publication is as good as the science it cites. However, quantifications of how features of reference lists affect citations remain sparse. We examined seven numerical characteristics of reference lists of 50,878 research articles published in 17 ecological journals between 1997 and 2017. Over this period, significant changes occurred in reference lists’ features. On average, more recent papers have longer reference lists and cite more high Impact Factor papers and fewer non-journal publications. We also show that highly cited articles across the ecological literature have longer reference lists, cite more recent and impactful references, and include more self-citations. Conversely, the proportion of ‘classic’ papers and non-journal publications cited, as well as the temporal span of the reference list, have no significant influence on articles’ citations. From this analysis, we distill a recipe for crafting impactful reference lists, at least in ecology.

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