Yuan Kunshan, Deng Chengchen, Tan Lili, Wang Xiangxiu, Yan Wenhua, Dai Xiaozhen, Du Ruolin, Zheng Yufeng, Zhang Haijun, Wang Guixue
Key Laboratory for Biorheological Science and Technology of Ministry of Education, State and Local Joint Engineering Laboratory for Vascular Implants, Bioengineering College of Chongqing University, Chongqing, 400030, China.
National United Engineering Laboratory for Biomedical Material Modification, Dezhou, 251100, China.
Bioact Mater. 2024 Feb 10;35:306-329. doi: 10.1016/j.bioactmat.2024.01.017. eCollection 2024 May.
OBJECTIVES: To examine the 16-year developmental history, research hotspots, and emerging trends of zinc-based biodegradable metallic materials from the perspective of structural and temporal dynamics. METHODS: The literature on zinc-based biodegradable metallic materials in WoSCC was searched. Historical characteristics, the evolution of active topics and development trends in the field of zinc-based biodegradable metallic materials were analyzed using the bibliometric tools CiteSpace and HistCite. RESULTS: Over the past 16 years, the field of zinc-based biodegradable metal materials has remained in a hotspot stage, with extensive scientific collaboration. In addition, there are 45 subject categories and 51 keywords in different research periods, and 80 papers experience citation bursts. Keyword clustering anchored 3 emerging research subfields, namely, #1 plastic deformation #4 additive manufacturing #5 surface modification. The keyword alluvial map shows that the longest-lasting research concepts in the field are mechanical property, microstructure, corrosion behavior, etc., and emerging keywords are additive manufacturing, surface modification, dynamic recrystallization, etc. The most recent research on reference clustering has six subfields. Namely, #0 microstructure, #2 sem, #3 additive manufacturing, #4 laser powder bed fusion, #5 implant, and #7 Zn-1Mg. CONCLUSION: The results of the bibliometric study provide the current status and trends of research on zinc-based biodegradable metallic materials, which can help researchers identify hot spots and explore new research directions in the field.
目的:从结构和时间动态的角度审视锌基可生物降解金属材料16年的发展历程、研究热点及新兴趋势。 方法:检索Web of Science核心合集(WoSCC)中关于锌基可生物降解金属材料的文献。使用文献计量工具CiteSpace和HistCite分析锌基可生物降解金属材料领域的历史特征、热点话题演变及发展趋势。 结果:在过去16年中,锌基可生物降解金属材料领域一直处于热点阶段,科研合作广泛。此外,不同研究时期有45个学科类别和51个关键词,80篇论文出现被引频次激增。关键词聚类确定了3个新兴研究子领域,即#1塑性变形、#4增材制造、#5表面改性。关键词冲积图显示,该领域持续时间最长的研究概念是力学性能、微观结构、腐蚀行为等,新兴关键词是增材制造、表面改性、动态再结晶等。最近的参考文献聚类研究有六个子领域,即#0微观结构、#2扫描电子显微镜、#3增材制造、#4激光粉末床熔融、#5植入物和#7 Zn-1Mg。 结论:文献计量学研究结果提供了锌基可生物降解金属材料的研究现状和趋势,有助于研究人员识别该领域的热点并探索新的研究方向。
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