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摇蚊毒理学的趋势与新兴热点:一项全面的文献计量分析

Trends and Emerging Hotspots in Toxicology of Chironomids: A Comprehensive Bibliometric Analysis.

作者信息

Liu Wen-Bin, Pei Wen-Xuan, Shao Zi-Ming, Nie Jia-Xin, Cao Wei, Yan Chun-Cai

机构信息

Tianjin Key Laboratory of Conservation and Utilization of Animal Diversity, Tianjin Normal University, Tianjin 300387, China.

出版信息

Insects. 2025 Jun 17;16(6):639. doi: 10.3390/insects16060639.

Abstract

(1) Background: Aquatic organisms are more sensitive to pollutants than terrestrial ones, making them ideal for ecotoxicology studies. Chironomids, a key bioindicator species, have been widely used in environmental pollution research. With the continuous deepening of research on water environmental pollution and the continuous development of molecular biology, it is therefore very important to understand the current research progress of the toxicology of chironomids. (2) Methods: This study used bibliometrics to analyze 1465 publications on chironomid toxicology from the Web of Science and PubMed databases, aiming to reveal research trends, hotspots, and future directions. The data analysis involved Microsoft Excel, VOS viewer, CiteSpace, and ChatGLM. (3) Results: Heavy metals, pesticides, and microplastics were the main pollutants studied, with being the most researched species. The analysis indicated a growing research trend since 1998, reflecting an increasing global concern over aquatic pollution. This study concludes that more molecular-level research is needed to uncover toxic mechanisms and improve environmental risk assessments. (4) Conclusions: This work will aid scientists and policymakers in developing better pollution control strategies and conservation efforts for aquatic ecosystems, ultimately contributing to environmental protection and public health.

摘要

(1) 背景:水生生物对污染物比陆生生物更敏感,这使它们成为生态毒理学研究的理想对象。摇蚊作为一种关键的生物指示物种,已被广泛应用于环境污染研究。随着对水环境污染研究的不断深入以及分子生物学的不断发展,因此了解摇蚊毒理学的当前研究进展非常重要。(2) 方法:本研究使用文献计量学方法,对来自科学网和PubMed数据库的1465篇关于摇蚊毒理学的出版物进行分析,旨在揭示研究趋势、热点和未来方向。数据分析涉及Microsoft Excel、VOS viewer、CiteSpace和ChatGLM。(3) 结果:重金属、农药和微塑料是研究的主要污染物, 是研究最多的物种。分析表明自1998年以来研究趋势不断增长,反映出全球对水污染的关注度不断提高。本研究得出结论,需要更多分子水平的研究来揭示毒性机制并改进环境风险评估。(4) 结论:这项工作将有助于科学家和政策制定者制定更好的水污染控制策略和水生生态系统保护措施,最终为环境保护和公众健康做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc5a/12194523/9abc09fdd017/insects-16-00639-g001.jpg

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