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骨组织工程中3D打印生物墨水的文献计量学与可视化分析

Bibliometric and visualized analysis of 3D printing bioink in bone tissue engineering.

作者信息

Xu Kaihao, Yu Sanyang, Wang Zhenhua, Zhang Zhichang, Zhang Zhongti

机构信息

The VIP Department, School and Hospital of Stomatology, China Medical University, Shenyang, China.

Department of Physiology, School of Life Sciences, China Medical University, Shenyang, China.

出版信息

Front Bioeng Biotechnol. 2023 Jul 20;11:1232427. doi: 10.3389/fbioe.2023.1232427. eCollection 2023.

Abstract

Applying 3D printed bioink to bone tissue engineering is an emerging technology for restoring bone tissue defects. This study aims to evaluate the application of 3D printing bioink in bone tissue engineering from 2010 to 2022 through bibliometric analysis, and to predict the hotspots and developing trends in this field. We retrieved publications from Web of Science from 2010 to 2022 on 8 January 2023. We examined the retrieved data using the bibliometrix package in R software, and VOSviewer and CiteSpace were used for visualizing the trends and hotspots of research on 3D printing bioink in bone tissue engineering. We identified 682 articles and review articles in this field from 2010 to 2022. The journal Biomaterials ranked first in the number of articles published in this field. In 2016, an article published by Hölzl, K in the Biofabrication journal ranked first in number of citations. China ranked first in number of articles published and in single country publications (SCP), while America surpassed China to rank first in multiple country publications (MCP). In addition, a collaboration network analysis showed tight collaborations among China, America, South Korea, Netherlands, and other countries, with the top 10 major research affiliations mostly from these countries. The top 10 high-frequency words in this field are consistent with the field's research hotspots. The evolution trend of the discipline indicates that most citations come from Physics/Materials/Chemistry journals. Factorial analysis plays an intuitive role in determining research hotspots in this sphere. Keyword burst detection shows that chitosan and endothelial cells are emerging research hotspots in this field. This bibliometric study maps out a fundamental knowledge structure including countries, affiliations, authors, journals and keywords in this field of research from 2010 to 2022. This study fills a gap in the field of bibliometrics and provides a comprehensive perspective with broad prospects for this burgeoning research area.

摘要

将3D打印生物墨水应用于骨组织工程是一种用于修复骨组织缺损的新兴技术。本研究旨在通过文献计量分析评估2010年至2022年3D打印生物墨水在骨组织工程中的应用,并预测该领域的热点和发展趋势。我们于2023年1月8日从Web of Science检索了2010年至2022年的出版物。我们使用R软件中的bibliometrix包检查检索到的数据,并使用VOSviewer和CiteSpace可视化骨组织工程中3D打印生物墨水的研究趋势和热点。我们确定了2010年至2022年该领域的682篇文章和综述文章。《生物材料》杂志在该领域发表的文章数量排名第一。2016年,Hölzl, K在《生物制造》杂志上发表的一篇文章的被引次数排名第一。中国在发表文章数量和单一国家出版物(SCP)方面排名第一,而美国在多个国家出版物(MCP)方面超过中国排名第一。此外,合作网络分析显示中国、美国、韩国、荷兰等国家之间有紧密的合作,前10大主要研究机构大多来自这些国家。该领域前10个高频词汇与该领域的研究热点一致。该学科的发展趋势表明,大多数被引文献来自物理/材料/化学期刊。因子分析在确定该领域的研究热点方面发挥了直观作用。关键词突现检测表明壳聚糖和内皮细胞是该领域新兴的研究热点。这项文献计量研究描绘了2010年至2022年该研究领域的包括国家、机构、作者、期刊和关键词在内的基础知识结构。本研究填补了文献计量学领域的空白,并为这个新兴的研究领域提供了具有广阔前景的全面视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4022/10400721/70e7ed3b6f9f/fbioe-11-1232427-g001.jpg

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