[基于WoSCC的糖尿病足生物力学研究动态及热点可视化分析]。

Q4 Medicine
Zhe Wang, Wei-Dong Liu, Jun Lu, Hong-Mou Zhao, Xue-Fei Cao, Yun-Long Zhang, Xin Chang, Liang Liu
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引用次数: 0

摘要

目的:采用文献计量学分析方法,探讨糖尿病足生物力学领域的研究现状及热点。方法:检索Web of science Core Collection (WoSCC) 1981 ~ 2024年发表的与糖尿病足生物力学相关的文献。利用CiteSpace软件和R语言文献计量学插件对文献年出版量进行可视化分析,包括各国家和地区的出版量、作者和机构的出版情况、个别文献的被引情况、关键词共现网络等。结果:共纳入文献996篇,发表论文数量稳步增长。美国(261篇)和中国(89篇)是发表论文数量最多的两个国家。美国的中介中心性为0.94,中国为0.01。像Cavanagh这样的学者和像克利夫兰诊所这样的机构是这一领域研究的核心。高频关键词包括:plantar pressure(足底压力)、diabetic foot(糖尿病足)、ulation(溃疡)等。结论:糖尿病足的生物力学研究主要集中在足底压力分布、骨痂形成、足底软组织力学分析、跟腱伸长引起足底减压的研究等方面。研究趋势从关注关节活动范围逐渐转向步态和支架及辅助装置的设计,并开始关注肌肉力量、步态不平衡和本体感觉异常。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Visual analysis of dynamics and hotspots of biomechanics research on diabetic foot based on WoSCC].

Objective: To explore the current research status and hotspots in the field of biomechanics of diabetic foot by bibliometric analysis methods.

Methods: Literatures related to biomechanics of diabetic foot published in the Web of Scienc Core Collection (WoSCC) from 1981 to 2024 were searched. CiteSpace software and R language bibliometrics plugin were used to conduct a visual analysis of annual publication volume of the literature, including publication volume of each country and region, the publication situation of authors and institutions, the citation situation of individual literature, and the co-occurrence network of keywords.

Results: Totally 996 literatures were included, and the number of published papers increased steadily. The United States (261 papers) and China (89 papers) were the top two countries in terms of the number of published papers. The mediating centrality of the United States was 0.94, and that of China was 0.01. Scholars such as Cavanagh and institutions like the Cleveland Clinic were at the core of research in this field. High-frequency keywords include plantar pressure (plantar pressure), diabetic foot (diabetic foot), ulceration (ulcer), etc. The research focuses on plantar pressure, ulcer formation and prevention, etc.

Conclusion: Biomechanical research on diabetic foot mainly focuses on the pressure distribution on the sole of the foot, callus formation, mechanical analysis of soft tissues on the sole of the foot, and the study of plantar decompression caused by Achilles tendon elongation. The research trend has gradually shifted from focusing on joint range of motion to gait and the design of braces and assistive devices, and has begun to pay attention to muscle strength, gait imbalance and proprioception abnormalities.

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