Shi-Peng Ke, Si-Mei Chen, Yi Jiang, Heng-Xin Gong, Jia-Li Yu, Xu Li, Yin-Yi Chen, Xiao-Hang Li, Qun-Xia Wang, Yan-Zhao Liu
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CiteSpace was applied to perform a bibliometric analysis of journals, cocitation authors, keywords, and references related to this field. VOSviewer was used to generate concise diagrams about countries, institutions, authors, and keywords. Changes in the TM research frontier were analyzed through citation burst detection.</p>\n </section>\n \n <section>\n \n <h3> Results</h3>\n \n <p>A total of 990 studies were analyzed in this work. The collaboration network analysis revealed that the People's Republic of China, Yonsei University, and Molina R were the most productive country, institution, and scholar, respectively. Additionally, Molina R was the author with the most citations. The National Natural Science Foundation of China was the largest funding source. “Carcinoembryonic antigen (CEA) as tumor marker in lung cancer” was the top reference with the most citations, <i>Lung Cancer</i> was the core journal, and “serum tumor marker” experienced a citation burst over the past 5 years.</p>\n </section>\n \n <section>\n \n <h3> Conclusion</h3>\n \n <p>This bibliometric analysis of TMs in LC diagnosis presents the current trends and frontiers in this field. We summarized the research status of this field and the methods to improve the diagnostic efficacy of traditional serum TMs, as well as provided new directions and ideas for improving the LC clinical detection rate. Priority should be given to the transformation of computer-assisted diagnostic technology for clinical applications. In addition, circulating tumor cells, exosomes, and microRNAs were the current most cutting-edge TMs.</p>\n </section>\n </div>","PeriodicalId":100212,"journal":{"name":"Cancer Innovation","volume":"2 4","pages":"265-282"},"PeriodicalIF":0.0000,"publicationDate":"2023-05-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1002/cai2.74","citationCount":"0","resultStr":"{\"title\":\"Bibliometric and visualized analysis of applying tumor markers in lung cancer diagnosis from 2000 to 2022\",\"authors\":\"Shi-Peng Ke, Si-Mei Chen, Yi Jiang, Heng-Xin Gong, Jia-Li Yu, Xu Li, Yin-Yi Chen, Xiao-Hang Li, Qun-Xia Wang, Yan-Zhao Liu\",\"doi\":\"10.1002/cai2.74\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div>\\n \\n \\n <section>\\n \\n <h3> Background</h3>\\n \\n <p>Lung cancer (LC) is the leading cause of cancer-related deaths worldwide. Tumor marker (TM) detection can indicate the existence and growth of a tumor and has therefore been used extensively for diagnosing LC. Here, we conducted a bibliometric analysis to examine TM-related publications for LC diagnosis to illustrate the current state and future trends of this field, as well as to identify additional promising TMs with high sensitivity.</p>\\n </section>\\n \\n <section>\\n \\n <h3> Methods</h3>\\n \\n <p>Publications regarding TMs in LC diagnosis were downloaded from the Web of Science Core Collection. CiteSpace was applied to perform a bibliometric analysis of journals, cocitation authors, keywords, and references related to this field. VOSviewer was used to generate concise diagrams about countries, institutions, authors, and keywords. Changes in the TM research frontier were analyzed through citation burst detection.</p>\\n </section>\\n \\n <section>\\n \\n <h3> Results</h3>\\n \\n <p>A total of 990 studies were analyzed in this work. 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引用次数: 0
摘要
背景癌症(LC)是全球癌症相关死亡的主要原因。肿瘤标志物(TM)检测可以指示肿瘤的存在和生长,因此被广泛用于诊断LC。在这里,我们进行了文献计量分析,以检查用于LC诊断的TM相关出版物,以说明该领域的现状和未来趋势,以及以高灵敏度识别另外的有前景的TM。方法从Web of Science Core Collection下载有关TM在LC诊断中的出版物。CiteSpace被应用于对与该领域相关的期刊、论文作者、关键词和参考文献进行文献计量分析。VOSviewer用于生成关于国家、机构、作者和关键词的简明图表。通过引文突发检测分析TM研究前沿的变化。结果共分析990项研究。合作网络分析显示,中华人民共和国、延世大学和莫利纳大学分别是生产力最高的国家、机构和学者。此外,莫利纳R是被引用次数最多的作者。国家自然科学基金是最大的资金来源。“癌胚抗原(CEA)作为癌症肿瘤标志物”是引用次数最多的参考文献,《癌症》是核心期刊,《血清肿瘤标志物》在过去5年中经历了引用暴增。结论本文献计量学分析TM在LC诊断中的应用,揭示了该领域的发展趋势和前沿。我们总结了该领域的研究现状和提高传统血清TM诊断疗效的方法,并为提高LC临床检出率提供了新的方向和思路。应优先考虑将计算机辅助诊断技术转化为临床应用。此外,循环肿瘤细胞、外泌体和微小RNA是目前最前沿的TM。
Bibliometric and visualized analysis of applying tumor markers in lung cancer diagnosis from 2000 to 2022
Background
Lung cancer (LC) is the leading cause of cancer-related deaths worldwide. Tumor marker (TM) detection can indicate the existence and growth of a tumor and has therefore been used extensively for diagnosing LC. Here, we conducted a bibliometric analysis to examine TM-related publications for LC diagnosis to illustrate the current state and future trends of this field, as well as to identify additional promising TMs with high sensitivity.
Methods
Publications regarding TMs in LC diagnosis were downloaded from the Web of Science Core Collection. CiteSpace was applied to perform a bibliometric analysis of journals, cocitation authors, keywords, and references related to this field. VOSviewer was used to generate concise diagrams about countries, institutions, authors, and keywords. Changes in the TM research frontier were analyzed through citation burst detection.
Results
A total of 990 studies were analyzed in this work. The collaboration network analysis revealed that the People's Republic of China, Yonsei University, and Molina R were the most productive country, institution, and scholar, respectively. Additionally, Molina R was the author with the most citations. The National Natural Science Foundation of China was the largest funding source. “Carcinoembryonic antigen (CEA) as tumor marker in lung cancer” was the top reference with the most citations, Lung Cancer was the core journal, and “serum tumor marker” experienced a citation burst over the past 5 years.
Conclusion
This bibliometric analysis of TMs in LC diagnosis presents the current trends and frontiers in this field. We summarized the research status of this field and the methods to improve the diagnostic efficacy of traditional serum TMs, as well as provided new directions and ideas for improving the LC clinical detection rate. Priority should be given to the transformation of computer-assisted diagnostic technology for clinical applications. In addition, circulating tumor cells, exosomes, and microRNAs were the current most cutting-edge TMs.