Li Lan, Li Yi, Pei Jingwen, Wu Yu, Wang Guobing, Zhang Jing, Liu Jinbo, Tian Gang
Department of Laboratory Medicine, The Affiliated Hospital of Southwest Medical University, Sichuan Province Engineering Technology Research Center of Molecular Diagnosis of Clinical Diseases, Molecular Diagnosis of Clinical Diseases Key Laboratory of Luzhou Sichuan China
Division of Basic Biomedical Sciences, The University of South Dakota Sanford School of Medicine Vermillion South Dakota 57069 USA.
RSC Adv. 2023 Oct 19;13(44):30704-30717. doi: 10.1039/d3ra05889a. eCollection 2023 Oct 18.
As a powerful tool for biological sensing, electrochemical biosensors have attracted much attention due to their ability to integrate biological recognition elements on an electrochemical interface and convert target analyte information into measurable electrochemical signals. Despite the abundance of literature published on the topic, no comprehensive surveys have been conducted to evaluate the area of electrochemical biosensors with bibliometric techniques. This paper employs VOSviewer to analyze and visualize literature from 2003 to 2023 in the Web of Science in order to gain an understanding of the development of the field of electrochemical biosensors in recent years. Co-occurrence and co-citation analysis are employed to identify research hotspots, trace evolutionary paths, and comprehend development trends in the field. Moreover, by analyzing highly cited and representative literature from different time periods, it is possible to recognize the major research hotspots and grasp the development pulse. The results of this study provide a comprehensive overview of the field of electrochemical biosensors and can be used to guide future research.
作为一种强大的生物传感工具,电化学生物传感器因其能够将生物识别元件集成在电化学界面上,并将目标分析物信息转化为可测量的电化学信号而备受关注。尽管关于该主题已发表了大量文献,但尚未进行全面的调查以用文献计量学技术评估电化学生物传感器领域。本文使用VOSviewer对科学网中2003年至2023年的文献进行分析和可视化,以了解近年来电化学生物传感器领域的发展情况。共现分析和共被引分析用于识别研究热点、追踪演化路径并理解该领域的发展趋势。此外,通过分析不同时期的高被引和代表性文献,可以识别主要研究热点并把握发展脉搏。本研究结果提供了电化学生物传感器领域的全面概述,可用于指导未来的研究。