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过去十年间压电通道研究的趋势:一项文献计量分析

Trends in Piezo Channel Research Over the Past Decade: A Bibliometric Analysis.

作者信息

Guo Jing, Gu Dongmei, Zhao Tingting, Zhao Zhanhao, Xiong Yajun, Sun Mengzhu, Xin Chen, Zhang Yujie, Pei Lixia, Sun Jianhua

机构信息

Department of Acupuncture Rehabilitation, The Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China.

Department of Massage, Danyang Hospital of Traditional Chinese Medicine, Danyang, China.

出版信息

Front Pharmacol. 2021 Apr 15;12:668714. doi: 10.3389/fphar.2021.668714. eCollection 2021.

Abstract

We used bibliometric methods to evaluate the global scientific output of research on Piezo channels and explore the current status and trends in this field over the past decade. Piezo channel-related studies published in 2010-2020 were retrieved from Web of Science. The R bibliometrix package was used for quantitative and qualitative analyses of publication outputs and author contributions. VOSviewer was used to construct networks based on co-authorship of countries/institutions/authors, co-citation analysis of journals/references, citation analysis of documents, and co-occurrence of keywords. In total, 556 related articles and reviews were included in the final analysis. The number of publications has increased substantially with time. The country and institution contributing the most to this field was the United States and Scripps Research Institute, respectively. Ardem Patapoutian was the most productive author and ranked first among the cited authors, -index, and -index. The top cited reference was the article published by Coste B et al. in (2010) that identified Piezo1/2 in mammalian cells. The top journals in terms of the number of selected articles and citations were and , respectively. The co-occurrence analysis revealed that Piezo channels are involved a variety of cell types (Merkel cells, neurons, endothelial cells, red blood cells), physiological processes (touch sensation, blood pressure, proprioception, vascular development), related ion channels (transient receptor potential, Gardos), and diseases (pain, distal arthrogryposis, dehydrated hereditary stomatocytosis, cancer), and pharmacology (Yoda1, GsMTx-4). Our bibliometric analysis shows that Piezo channel research continues to be a hotspot. The focus has evolved from Piezo identification to architecture, activation mechanism, roles in diseases, and pharmacology.

摘要

我们采用文献计量学方法评估了Piezo通道研究的全球科学产出,并探讨了该领域在过去十年的现状和趋势。从Web of Science检索了2010 - 2020年发表的与Piezo通道相关的研究。使用R语言的bibliometrix包对出版物产出和作者贡献进行定量和定性分析。VOSviewer用于基于国家/机构/作者的共同作者关系、期刊/参考文献的共被引分析、文献的引文分析以及关键词的共现构建网络。最终分析共纳入556篇相关文章和综述。出版物数量随时间大幅增加。在该领域贡献最大的国家和机构分别是美国和斯克里普斯研究所。阿尔登·帕塔普蒂安是产出最多的作者,在被引作者、h指数和g指数方面均排名第一。被引次数最多的参考文献是科斯特·B等人于2010年发表的在哺乳动物细胞中鉴定出Piezo1/2的文章。就入选文章数量和引文数量而言,排名靠前的期刊分别是《 》和《 》。共现分析表明,Piezo通道涉及多种细胞类型(默克尔细胞、神经元、内皮细胞、红细胞)、生理过程(触觉、血压、本体感觉、血管发育)、相关离子通道(瞬时受体电位、加尔多斯通道)以及疾病(疼痛、远端关节弯曲症、遗传性脱水口形红细胞增多症、癌症)和药理学(Yoda1、GsMTx - 4)。我们的文献计量分析表明,Piezo通道研究仍然是一个热点。研究重点已从Piezo通道的鉴定发展到其结构、激活机制、在疾病中的作用以及药理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/988a/8082452/2c692d283edb/fphar-12-668714-g001.jpg

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