{"title":"1991 - 2021年全球角膜组织工程研究现状与趋势的文献计量与可视化分析。","authors":"Hua-Qing Niu, Yun Yang, Bei-Bei Wang, Wen-Tian Xiao, Hui-Ru Wu, Ya-Dong Liu, Bo-Wen Zheng, Ming-Xiang Zou","doi":"10.1177/20417314221138188","DOIUrl":null,"url":null,"abstract":"<p><p>Corneal tissue engineering has developed rapidly in recent years, with a large number of publications emerging worldwide. This study focused on exploring the global status and research trends in this field. Publications related to corneal tissue engineering from 1991 to 2021 were acquired from the Science Citation Index-Expanded (SCI-Expanded) of Web of Science (WoS). Firstly, the VOS viewer software was chosen for visualizing bibliometric networks, including bibliographic coupling analysis, co-citation analysis, co-authorship analysis, and co-occurrence analysis, and the CiteSpace software was used to detect burst keywords. Subsequently, the publication trends in corneal tissue engineering research were also predicted. In present study, 953 publications were selected and analyzed. The number of annual publications was increasing globally and was predicted to continue the current trend. While Japan ranked top 1 in terms of average citation, the USA contributed the most to the corneal tissue engineering research with highest number of citations and highest <i>H</i>-index. The journal of Biomaterials contributed the largest publication number. The top-ranked institutions were National University of Singapore and Singapore National Eye Center. Additionally, researches could be manually divided into four clusters: \"biomaterial related research,\" \"cell related research,\" \"transplantation therapy,\" and \"mechanism research on biomaterials.\" Specifically, the research topic \"hydrogel\" was predicted to be hotspots which may help researchers to explore new directions for future research.</p>","PeriodicalId":17384,"journal":{"name":"Journal of Tissue Engineering","volume":null,"pages":null},"PeriodicalIF":6.7000,"publicationDate":"2022-11-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ftp.ncbi.nlm.nih.gov/pub/pmc/oa_pdf/5d/f7/10.1177_20417314221138188.PMC9677304.pdf","citationCount":"5","resultStr":"{\"title\":\"A global bibliometric and visualized analysis in the status and trends of corneal tissue engineering research from 1991 to 2021.\",\"authors\":\"Hua-Qing Niu, Yun Yang, Bei-Bei Wang, Wen-Tian Xiao, Hui-Ru Wu, Ya-Dong Liu, Bo-Wen Zheng, Ming-Xiang Zou\",\"doi\":\"10.1177/20417314221138188\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Corneal tissue engineering has developed rapidly in recent years, with a large number of publications emerging worldwide. This study focused on exploring the global status and research trends in this field. Publications related to corneal tissue engineering from 1991 to 2021 were acquired from the Science Citation Index-Expanded (SCI-Expanded) of Web of Science (WoS). Firstly, the VOS viewer software was chosen for visualizing bibliometric networks, including bibliographic coupling analysis, co-citation analysis, co-authorship analysis, and co-occurrence analysis, and the CiteSpace software was used to detect burst keywords. Subsequently, the publication trends in corneal tissue engineering research were also predicted. In present study, 953 publications were selected and analyzed. The number of annual publications was increasing globally and was predicted to continue the current trend. While Japan ranked top 1 in terms of average citation, the USA contributed the most to the corneal tissue engineering research with highest number of citations and highest <i>H</i>-index. 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引用次数: 5
摘要
角膜组织工程近年来发展迅速,在世界范围内涌现了大量的相关研究成果。本研究重点探讨了该领域的全球现状和研究趋势。从Web of Science (WoS)的Science Citation Index-Expanded (SCI-Expanded)中获取1991 - 2021年与角膜组织工程相关的出版物。首先,选择VOS查看软件对文献计量网络进行可视化,包括书目耦合分析、共被引分析、合著分析和共现分析,并使用CiteSpace软件检测突发关键词。随后,对角膜组织工程研究的发表趋势进行了预测。本研究选取953篇文献进行分析。全球年度出版物的数量正在增加,预计将继续保持目前的趋势。日本在平均被引次数上排名前1,而美国在角膜组织工程研究方面的贡献最大,被引次数最多,h指数最高。《生物材料》杂志的发表数量最多。排名靠前的机构是新加坡国立大学和新加坡国立眼科中心。此外,研究可以手工划分为四个集群:“生物材料相关研究”、“细胞相关研究”、“移植治疗”和“生物材料机制研究”。具体而言,“水凝胶”这一研究课题有望成为研究热点,为今后的研究探索新的方向。
A global bibliometric and visualized analysis in the status and trends of corneal tissue engineering research from 1991 to 2021.
Corneal tissue engineering has developed rapidly in recent years, with a large number of publications emerging worldwide. This study focused on exploring the global status and research trends in this field. Publications related to corneal tissue engineering from 1991 to 2021 were acquired from the Science Citation Index-Expanded (SCI-Expanded) of Web of Science (WoS). Firstly, the VOS viewer software was chosen for visualizing bibliometric networks, including bibliographic coupling analysis, co-citation analysis, co-authorship analysis, and co-occurrence analysis, and the CiteSpace software was used to detect burst keywords. Subsequently, the publication trends in corneal tissue engineering research were also predicted. In present study, 953 publications were selected and analyzed. The number of annual publications was increasing globally and was predicted to continue the current trend. While Japan ranked top 1 in terms of average citation, the USA contributed the most to the corneal tissue engineering research with highest number of citations and highest H-index. The journal of Biomaterials contributed the largest publication number. The top-ranked institutions were National University of Singapore and Singapore National Eye Center. Additionally, researches could be manually divided into four clusters: "biomaterial related research," "cell related research," "transplantation therapy," and "mechanism research on biomaterials." Specifically, the research topic "hydrogel" was predicted to be hotspots which may help researchers to explore new directions for future research.
期刊介绍:
The Journal of Tissue Engineering (JTE) is a peer-reviewed, open-access journal dedicated to scientific research in the field of tissue engineering and its clinical applications. Our journal encompasses a wide range of interests, from the fundamental aspects of stem cells and progenitor cells, including their expansion to viable numbers, to an in-depth understanding of their differentiation processes. Join us in exploring the latest advancements in tissue engineering and its clinical translation.