Yang Liu, Singjie Wong, Yunxi Han, Xuefei Li, Luying Yuan, Mengting Xiong, Li Zhao, Hao Xu, Tengteng Wang, Qianqian Liang
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引用次数: 0
Abstract
Adipose Stem Cell Tissue Engineering (ASCTE) has emerged as a promising field of research in recent years. To gain comprehensive insights into this field, we conducted a comprehensive bibliometric analysis using Web of Science Core Collection and various bibliometric tools, including CiteSpace, VOS viewer, and R-Bibliometrix. Our analysis focuses on the historical development and evolution of active topics in ASCTE from a time-dynamics perspective, covering 4522 publications, 3924 academic institutions, and 873 journals, with significant growth observed over the past two decades. In terms of the global research landscape, the United States and China dominate the field. Shanghai Jiao Tong University, the University of Pittsburgh, and Ming Ho University are the top three institutions contributing to research in this area. Biomaterials is identified as the central journal in terms of cocitation analysis. Our analysis also reveals new areas of development, such as 3D printing, platelet lysate, and clinical practice, as well as current trends in hydrogels, nanomaterials, and extracellular vesicles. These findings point to exciting prospects for future ASCTE research. Unlike previous subjective reviews, our bibliometric analysis provides an objective assessment of the current state and emerging trends in ASCTE research, allowing researchers to identify popular research areas and explore new directions in this dynamic field.
近年来,脂肪干细胞组织工程(ASCTE)已成为一个很有前途的研究领域。为了全面了解这一领域,我们使用Web of Science核心收藏和各种文献计量工具进行了全面的文献计量分析,包括CiteSpace、VOS查看器和R-Bibliometrix。我们的分析从时间动力学的角度重点关注ASCTE中活跃主题的历史发展和演变,涵盖4522种出版物、3924个学术机构和873种期刊,在过去二十年中观察到显著增长。就全球研究格局而言,美国和中国在该领域占据主导地位。上海交通大学、匹兹堡大学和明和大学是对这一领域研究贡献最大的三所大学。《生物材料》被确定为协同作用分析的中心期刊。我们的分析还揭示了新的发展领域,如3D打印、血小板裂解物和临床实践,以及水凝胶、纳米材料和细胞外囊泡的当前趋势。这些发现为ASCTE未来的研究指明了令人兴奋的前景。与以往的主观综述不同,我们的文献计量分析对ASCTE研究的现状和新趋势进行了客观评估,使研究人员能够确定热门研究领域,并探索这一动态领域的新方向。
期刊介绍:
Tissue Engineering is the preeminent, biomedical journal advancing the field with cutting-edge research and applications that repair or regenerate portions or whole tissues. This multidisciplinary journal brings together the principles of engineering and life sciences in the creation of artificial tissues and regenerative medicine. Tissue Engineering is divided into three parts, providing a central forum for groundbreaking scientific research and developments of clinical applications from leading experts in the field that will enable the functional replacement of tissues.
Tissue Engineering Methods (Part C) presents innovative tools and assays in scaffold development, stem cells and biologically active molecules to advance the field and to support clinical translation. Part C publishes monthly.