脊髓损伤后胶质细胞的免疫调节:文献计量分析

Yi Huang, Rong Hu, Lei Wu, Kelin He, Ruijie Ma
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引用次数: 0

摘要

免疫调节是脊髓损伤(SCI)病理过程中一个复杂而关键的过程,受多种因素调控,在SCI的功能修复中发挥着重要作用。本研究旨在从文献计量学的角度探讨SCI后神经胶质细胞免疫调节的研究热点和趋势。研究人员从Web of Science Core Collection中获取了2004年至2023年发表的与SCI后神经胶质细胞免疫调节相关的论文数据。利用R软件包 "bibliometrix"、VOSviewer、Citespace和文献计量学在线分析平台对该主题中的国家、机构、作者、期刊和关键词进行了定量分析。共收录了613篇论文,年均增长率为9.39%。这些论文来自 36 个国家,其中美国的论文数量最多,与 27 个国家开展了合作。南通大学是最有影响力的机构。我们确定了 3177 位作者,其中魏兹曼科学研究院的 Schwartz(男)在特定领域的 H 指数(18)和每篇论文的平均引用次数(151.44)方面均排名第一。神经胶质细胞在期刊中排名第一,总引用次数为 2,574 次。关键词 "小胶质细胞"、"激活"、"巨噬细胞"、"星形胶质细胞 "和 "神经炎症 "代表了近期的热门话题,预计仍将是未来研究的重点。这些发现有力地表明,小胶质细胞、星形胶质细胞和胶质细胞相互作用的免疫调节效应可能是促进 SCI 后神经再生和修复的关键。有关 SCI 后神经胶质细胞免疫调节的研究正在兴起,各国和各机构之间应加强合作与交流,促进这一领域的发展,使更多的 SCI 患者受益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immunoregulation of Glia after spinal cord injury: a bibliometric analysis
Immunoregulation is a complex and critical process in the pathological process of spinal cord injury (SCI), which is regulated by various factors and plays an important role in the functional repair of SCI. This study aimed to explore the research hotspots and trends of glial cell immunoregulation after SCI from a bibliometric perspective.Data on publications related to glial cell immunoregulation after SCI, published from 2004 to 2023, were obtained from the Web of Science Core Collection. Countries, institutions, authors, journals, and keywords in the topic were quantitatively analyzed using the R package “bibliometrix”, VOSviewer, Citespace, and the Bibliometrics Online Analysis Platform.A total of 613 papers were included, with an average annual growth rate of 9.39%. The papers came from 36 countries, with the United States having the highest output, initiating collaborations with 27 countries. Nantong University was the most influential institution. We identified 3,177 authors, of whom Schwartz, m, of the Weizmann Institute of Science, was ranked first regarding both field-specific H-index (18) and average number of citations per document (151.44). Glia ranked first among journals with 2,574 total citations. The keywords “microglia,” “activation,” “macrophages,” “astrocytes,” and “neuroinflammation” represented recent hot topics and are expected to remain a focus of future research.These findings strongly suggest that the immunomodulatory effects of microglia, astrocytes, and glial cell interactions may be critical in promoting nerve regeneration and repair after SCI. Research on the immunoregulation of glial cells after SCI is emerging, and there should be greater cooperation and communication between countries and institutions to promote the development of this field and benefit more SCI patients.
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