机器人外骨骼辅助中风患者行走康复:文献计量学和视觉分析

Shuangshuang Wen, Ruina Huang, Lu Liu, Yan Zheng, Hegao Yu
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引用次数: 0

摘要

本研究旨在对过去十年Web of Science核心文库中有关外骨骼机器人辅助脑卒中患者行走康复的文献进行文献计量分析。从Web of Science核心文库中检索了2014年1月1日至2024年1月31日有关外骨骼机器人辅助脑卒中偏瘫患者步态训练的文献。检索方法为主题检索,文献类型为 "文章、会议摘要、综述文章、早期访问"。利用 CiteSpace 从国家、机构、关键词、被引参考文献和被引作者等方面对检索结果进行分析。共检索到 1349 篇文章,最终纳入 1034 篇进行可视化分析。年发表量呈上升趋势,欧美国家、机构和作者居多。核心文献也是由欧美国家的作者发表的。关键词分为 8 组:# 0 号软机器人出口、1 号机器人辅助增益训练、2 号多重尺度、3 号磁流变制动器、4 号测试重测可靠性、5 号机电辅助训练、6 号大脑工资、7 号缓慢增益。早期的研究方向主要是开发外骨骼机器人,验证其可靠性和可行性。本研究对该领域的研究现状、发展趋势和研究热点进行了直观展示,有助于该领域研究人员把握研究热点,选择未来研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robotic exoskeleton-assisted walking rehabilitation for stroke patients: a bibliometric and visual analysis
This study aimed to conduct a bibliometric analysis of the literature on exoskeleton robot assisted walking rehabilitation for stroke patients in the Web of Science Core Collection over the past decade.Retrieved literature on exoskeleton robot assisted gait training for stroke hemiplegic patients from the Web of Science Core Collection from 1 January 2014 to 31 January 2024. The search method was topic search, and the types of documents were “article, meeting abstract, review article, early access.” CiteSpace was used to analyze the search results from countries, institutions, keywords, cited references and cited authors.A total of 1,349 articles were retrieved, and 1,034 were ultimately included for visualization analysis. The annual publication volume showed an upward trend, with countries, institutions, and authors from Europe and America in a leading position. The core literature was also published by authors from European and American countries. The keywords were divided into 8 clusters: # 0 soft robotic exit, # 1 robot assisted gain training, # 2 multiple scales, # 3 magnetic rheological brake, # 4 test retest reliability, # 5 electromechanical assisted training, # 6 cerebra salary, and # 7 slow gain. The early research direction focused on the development of exoskeleton robots, verifying their reliability and feasibility. Later, the focus was on the combination of exoskeleton robot with machine learning and other technologies, rehabilitation costs, and patient quality of life.This study provides a visual display of the research status, development trends, and research hotspots, which helps researchers in this field to grasp the research hotspots and choose future research directions.
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