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脊柱椎弓根螺钉应用的生物力学特征
引用本文:李现令,李现今,张学军,鲁守彦,赵萍,李承鑫,孙琳,张昆亚,张钦明.脊柱椎弓根螺钉应用的生物力学特征[J].中国临床康复,2011(30):5640-5645.
作者姓名:李现令  李现今  张学军  鲁守彦  赵萍  李承鑫  孙琳  张昆亚  张钦明
作者单位:[1]首都医科大学附属北京儿童医院外科,北京市100045 [2]中国科学院力学研究所,北京市100190 [3]北京市中关村医院,北京市100090 [4]安徽省立儿童医院外科,安徽省合肥市230051 [5]首都医科大学生物工程学院力学实验室,北京市100069
摘    要:背景:椎弓根螺钉内固定经过不断的发展和完善,生物力学理论在脊柱内固定器方面也有了很大进展。目的:对脊柱椎弓根螺钉应用的生物力学研究进行综述。方法:应用计算机检索1986-01/2010-10CNKI和Pubmed数据库,在标题和摘要中以"椎弓根螺钉,生物力学"或"Pedicle Screw,Biomechanics"为检索词进行检索。选择文章内容与椎弓根螺钉的生物力学有关者,同一领域文献则选择近期发表或发表在权威杂志文章。最终入选49篇文献进行综述。结果与结论:在椎弓根螺钉的发展过程中,生物力学不仅为内固定的研制提供理论基础,也是测试和评价新设计内固定器效果的最终依据和标准。文章结果显示椎弓根螺钉植入点、植入方向、螺钉大小、螺钉形状、螺钉材料对脊柱生物力学均有一定影响。

关 键 词:螺钉  脊柱  椎弓根  应用  生物力学  研究进展

Biomechanical study of spinal pedicle screws
Li Xian-ling,Li Xian-jin,Zhang Xue-jun,Lu Shou-yan,Zhao Ping,Li Cheng-xin,Sun Lin,Zhang Kun-ya,Zhang Qin-ming.Biomechanical study of spinal pedicle screws[J].Chinese Journal of Clinical Rehabilitation,2011(30):5640-5645.
Authors:Li Xian-ling  Li Xian-jin  Zhang Xue-jun  Lu Shou-yan  Zhao Ping  Li Cheng-xin  Sun Lin  Zhang Kun-ya  Zhang Qin-ming
Institution:1Department of Orthopedics,Beijing Children's Hospital,Capital Medical University,Beijing 100045,China;2Institute of Mechanics,Chinese Academy of Sciences,Beijing 100190,China;3Beijing Zhongguancun Hospital,Beijing 100090,China;4Department of Orthopedics,Anhui Provincial Children Hospital,Hefei 230051,Anhui Province,China;5Biomechanics Laboratory,College of Bioengineering,Capital Medical University,Beijing 100069,China )
Abstract:BACKGROUND:Pedicle screw internal fixation after constant development and perfection has been advanced in spinal fixator field from aspect of biomechanics theory. OBJECTIVE:To review the biomechanical study of spinal pedicle screws. METHODS:CNKI and Pubmed(1986-01/2010-10) were retrieved to search the related articles about biomechanics of pedicle screws using the of "pedicle screws,biomechanics" in Chinese and English. Finally 49 articles were included. RESULTS AND CONCLUSION:In the development process of pedicle screws,biomechanics not only provides theoretical foundation for the development of the internal fixation,but also is the ultimate basis and holder effect standard for testing and evaluation of new designs. Pedicle screw implantation point,implant orientation,screw size,screw shape,screw materials have a certain impact on spinal biomechanics.
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