Trauma Center, Peking University People's Hospital, National Center for Trauma Medicine, Key Laboratory of Trauma and Neural Regeneration (Ministry of Education), Beijing, China.
Medicine (Baltimore). 2023 Jan 27;102(4):e32780. doi: 10.1097/MD.0000000000032780.
Multimodal molecular imaging technologies have been widely used to optimize medical research and clinical practice. Bibliometric analysis was performed to identify global research trends, hot spots, and scientific frontiers of multimodal molecular imaging technology from 2012 to 2021. The articles and reviews related to multimodal molecular imaging were retrieved from the Web of Science Core Collection. A bibliometric study was performed using CiteSpace and VOSviewer. A total of 4169 articles and reviews from 2012 to 2021 were analyzed. An increasing trend in the number of articles on multimodal molecular imaging technology was observed. These publications mainly come from 417 institutions in 92 countries, led by the USA and China. K. Bailey Freund published the most papers amongst the publications, while R.F. Spaide had the most co-citations. A dual map overlay of the literature shows that most publications were specialized in physics/materials/chemistry, and molecular/biology/immunology. Synergistic therapy in cancer, advanced nanotechnology, and multimodal imaging in ophthalmology are new trends and developing areas of interest. A global bibliometric and visualization analysis was used to comprehensively review the published research related to multimodal molecular imaging. This study may help in understanding the dynamic patterns of multimodal molecular imaging technology research and point out the developing areas of this field.
多模态分子成像技术已广泛应用于优化医学研究和临床实践。本研究通过文献计量学分析,确定了 2012 年至 2021 年多模态分子成像技术的全球研究趋势、热点和科学前沿。从 Web of Science 核心合集检索到与多模态分子成像相关的文章和综述。使用 CiteSpace 和 VOSviewer 进行了文献计量学研究。共分析了 2012 年至 2021 年的 4169 篇文章和综述。多模态分子成像技术相关文章的数量呈上升趋势。这些出版物主要来自 92 个国家的 417 个机构,美国和中国处于领先地位。K. Bailey Freund 在发表的论文中排名第一,而 R.F. Spaide 的被引频次最高。文献的双图叠加显示,大多数出版物专注于物理/材料/化学和分子/生物/免疫学。癌症的协同治疗、先进的纳米技术以及眼科的多模态成像,是该领域的新趋势和新兴研究领域。本研究采用全球文献计量学和可视化分析,全面回顾了多模态分子成像相关的已发表研究。本研究可能有助于理解多模态分子成像技术研究的动态模式,并指出该领域的发展方向。