中国组织工程研究 ›› 2012, Vol. 16 ›› Issue (24): 4535-4540.doi: 10.3969/j.issn.1673-8225.2012.24.034

• 组织构建学术探讨 tissue construction academic discussion • 上一篇    下一篇

半月板运动性损伤的组织工程修复:国际研究趋势与未来

杨小宁   

  1. 重庆师范大学大学城校区体育学院,重庆市 401331
  • 收稿日期:2012-01-12 修回日期:2012-05-15 出版日期:2012-06-10 发布日期:2013-11-05
  • 作者简介:杨小宁,男,1983年生,四川省资阳市人,汉族,2005年成都体育学院毕业,主要从事运动损伤方面的研究。 3376439@qq.com

Tissue-engineered repair of exercise-induced meniscal injury: International research trends and future

Yang Xiao-ning   

  1. Sports Institute of Chongqing Normal University, Chongqing 401331, China  
  • Received:2012-01-12 Revised:2012-05-15 Online:2012-06-10 Published:2013-11-05
  • About author:Yang Xiao-ning, Sports Institute of Chongqing NormalUniversity, Chongqing 401331, China 3376439@qq.com

摘要:

背景:骨组织工程学、基因工程、生物力学以及材料学等学科研究的深入,为半月板损伤的治疗提供了新途径。
目的:利用Scopus数据库文献检索和深度分析功能,对于半月板运动损伤的组织工程修复的文献资料趋势进行多层次探讨分析,总结半月板运动损伤的组织工程修复的应用进展。
方法:通过计算机检索Scopus数据库中2002/2011有关半月板运动损伤的组织工程修复的文献,检索词为“半月板(meniscus),运动损伤(sports injuries),组织工程(tissue engineering),修复(repair)”,共检索文献245篇,并分析结果,以文字和图表的形式进行统计和计量分析,描述其分布特征。
结果与结论:Scopus数据库2002-01/2011-12有关半月板运动损伤的组织工程修复共检索到245篇相关文献,美国、英国在该领域文献产出量多于其他国家,对该领域研究起到重要作用,发表文献较多的机构集中在美国莱斯大学、宾夕法尼亚大学,荷兰内梅亨大学医学中心。文献数量总体呈上升趋势,《生物材料》杂志发表文献量较多,15篇,占全部文献的6.12%。通过文献计量学方法对来源于Scopus数据库关于半月板运动损伤的组织工程修复的文献进行分析,可为了解该领域的概貌、现状和研究者进一步确定热点难点提供有价值的参考。

关键词: 半月板, 运动损伤, 组织工程, 修复, 文献计量

Abstract:

BACKGROUND: The depth study of disciplines, such as tissue engineering, genetic engineering, biomechanics and materials science, provides a new approach for the treatment of meniscal injuries.
OBJECTIVE: To multivariately analyze the literatures on the tissue-engineered repair of exercise-induced meniscal injury through Scopus database and to summarize the application progress of tissue-engineered repair of exercise-induced meniscal injury.
METHODS: A retrieval was performed for the literature of the tissue-engineered repair of exercise-induced meniscal injury, using the key words of “meniscus, sports injuries, tissue engineering, repair” between January 2002 and December 2011 in Scopus database. The retrieval results were analyzed, and the trends were described in words and graphics.
RESULTS AND CONCLUSION: A total of 245 literatures on the issue-engineered repair of exercise-induced meniscal injury were retrieved in Scopus database, in which most of paper were published as original articles. Eight articles were identified as classic literatures. The overall number of literature had an upward trend from 2002 to 2011. United States and England published more literature than other countries, which play an important role in the field of tissue-engineered repair of exercise-induced meniscal injury. Most of literatures were published from Rice University, University of Pennsylvania, and Radboud University Nijmegen Medical Centre. Biomaterials published most papers in this field (n=15, 6.12%). This paper provides a valuable reference for researchers to understand the overview and present situation of this field.

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