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A Reverse Engineering Approach to the Suppression of Citation Biases Reveals Universal Properties of Citation Distributions

机译:抑制引用偏差的逆向工程方法揭示了引用分布的通用属性

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摘要

The large amount of information contained in bibliographic databases has recently boosted the use of citations, and other indicators based on citation numbers, as tools for the quantitative assessment of scientific research. Citations counts are often interpreted as proxies for the scientific influence of papers, journals, scholars, and institutions. However, a rigorous and scientifically grounded methodology for a correct use of citation counts is still missing. In particular, cross-disciplinary comparisons in terms of raw citation counts systematically favors scientific disciplines with higher citation and publication rates. Here we perform an exhaustive study of the citation patterns of millions of papers, and derive a simple transformation of citation counts able to suppress the disproportionate citation counts among scientific domains. We find that the transformation is well described by a power-law function, and that the parameter values of the transformation are typical features of each scientific discipline. Universal properties of citation patterns descend therefore from the fact that citation distributions for papers in a specific field are all part of the same family of univariate distributions.
机译:书目数据库中包含的大量信息最近促进了使用引文以及其他基于引文数量的指标作为科学研究定量评估的工具。引用计数通常被解释为论文,期刊,学者和机构的科学影响力的代理。但是,仍然缺少用于正确使用引用计数的严格科学依据的方法。特别是,在原始引文计数方面的跨学科比较系统地支持了具有较高引文和发表率的科学学科。在这里,我们对数百万篇论文的引文模式进行了详尽的研究,并得出了引文计数的简单转换,能够抑制科学领域中不成比例的引文计数。我们发现通过幂律函数可以很好地描述变换,并且变换的参数值是每个科学学科的典型特征。因此,引文模式的通用属性源于以下事实:特定领域中论文的引文分布都属于同一单变量分布族。

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