收稿日期: 2015-10-23
网络出版日期: 2016-04-20
基金资助
江苏省卫生厅预防医学基金(Y2012019);国家自然科学基金(41271418)
Application of GoPubMed in bibliometric analysis of literature on vector-borne diseases
Received date: 2015-10-23
Online published: 2016-04-20
Supported by
Supported by the Preventive Medicine Foundation from the Bureau of Public Health of Jiangsu Province (No. Y2012019) and the National Natural Science Foundation of China (No. 41271418)
目的 了解媒介生物性疾病研究发表文献情况,为从事媒介生物性疾病相关研究人员提供参考。方法 以媒介生物性疾病研究文献为对象,采用GoPubMed数据库在线分析软件,分析相关文献的年度、国家和城市分布、来源期刊、研究主题及研究作者。结果 共检索到文献3214篇,文献数量呈逐年上升趋势;其中来源于美国的文献数量和影响力居首位,以柯林斯堡最多;《美国热带医学与卫生》杂志文献176篇,居首位;发文量最多作者为Roehrig J,共55篇。结论 GoPubMed是一种优秀的集检索与统计功能于一体的工具;揭示了媒介生物性疾病研究的现状和发展趋势;我国媒介生物性疾病研究文献在数量和质量上均有待提高。
孙燕群, 徐智慧, 熊丽林, 王冲, 何隆华, 张守刚 . 利用GoPubMed对媒介生物性疾病研究文献计量学分析[J]. 中国媒介生物学及控制杂志, 2016 , 27(2) : 164 -167 . DOI: 10.11853/j.issn.1003.8280.2016.02.018
Objective To understand the status and developmental trend of vector-borne diseases, so as to provide reference for researchers of vector-borne diseases. Methods Using the GoPubMed database on-line analysis software, study the vector-borne disease articles by making analysis of years, country and city distribution, source journals, research topics and the authors. Results There were 3 214 matched literatures for vector-borne disease retrieved with an increasing number year by year, among which the United States rank the first in countries, Fort Collins in cities, American Journal of Tropical Medicine and Hygiene in journals and Roehrig J in authors. Conclusion GoPubMed is an excellent tool for retrieval and statistics function, it can show a vivid picture of the current situation and developmental trend of vector-borne diseases. Further improvements are needed both in the quality and quantity of management in vector-borne diseases in China.
Key words: GoPubMed; Vector-borne disease; Bibliometric analysis
[1] Doms A,Schroeder M. GoPubMed:exploring PubMed with the gene ontology[J]. Nucleic Acids Res,2005,33 Suppl 2:S783-786.
[2] 李镜辉,李贵昌,刘京利. 媒介与媒介生物性疾病[J]. 国际医学寄生虫病杂志,2007,34(1):7-12.
[3] 中华人民共和国卫生部. 全国病媒生物监测方案(试行)[S]. 北京:中国疾病预防控制中心,2005.
[4] 蒋洪,董惠芬,蒋明森. 可持续的病媒生物控制技术[J]. 中华卫生杀虫药械,2013,19(6):478-480,484.
[5] 郑学礼. 我国蚊媒研究概况[J]. 中国病原生物学杂志,2014,9(2):183-187.
[6] Manore CA,Hickmann KS,Hyman JM,et al. A network-patch methodology for adapting agent-based models for directly transmitted disease to mosquito-borne disease[J]. J Biol Dyn, 2015,9(1):52-72.
[7] Ganguly S. A comprehensive review on some vector borne diseases of human[J]. Int J Pharm Biomed Res,2015,2(1):23-25.
[8] Powers AM. Chikungunya virus control:is a vaccine on the horizon?[J]. Lancet,2014,384(9959):2008-2009.
[9] Kilpatrick AM,Randolph SE. Drivers,dynamics,and control of emerging vector-borne zoonotic diseases[J]. Lancet,2012,380(9857):1946-1955.
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