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数字技术在椎弓根通道设计中的应用

Application of digitalized technique in design of pedicle channel

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【作者】 李严兵张元智王平山王爱平李国杰谢叻钟世镇

【Author】 LI Yan-bing1, ZHANG Yuan-zhi2, WANG Ping-shan3, WANG Ai-ping4 LI Guo-jie5, XIE le5, ZHONG Shi-Zhen1 (1.Guangdong Province Medicine Biology Mechanics Key Laboratory, Southern Medical University, Guangzhou Guangdong 510515 P.R.China; 2.Department of Orthopaedics and Traumatology, Nanfang Hospital, Southern Medical University, Guangzhou 510515, P.R.China; 3.Department of Orthopaedics and Traumatology, Jinan Military Area Command General Hospital, JiNan, Shandong 250031,P.R.China; 4.Department of Human Anatomy, NanHua University, Hengyang, Hunan 421001, P.R China; 5.National Die and Mold CAD Engineering Research Center, Shanghai Jiaotong University, Shanghai 200030, P.R.China)

【机构】 南方医科大学广东省医学生物力学重点实验室南方医科大学南方医院创伤骨科济南军区总医院骨创伤外科南华大学人体解剖学教研室上海交通大学国家模具CAD工程中心南方医科大学广东省医学生物力学重点实验室 广东广州510515广东广州510515山东济南250031湖南衡阳421001上海200030

【摘要】 目的探讨精确定位椎弓根通道的数字解剖学方法,为经椎弓根内固定提供安全、有效、标准化的理论参考依据。方法原始数据来源于1例健康成人腰骶部的CT连续断层扫描数据集,将CT连续断层扫描数据导入Mimics8.11软件,三维重建腰椎数字解剖模型,将任意节段椎骨数字模型导入Surface10.0,确定椎骨正交正中矢状面和水平面作为椎骨参考平面,确定椎弓根位置,获取椎弓根表面轮廓,根据任意预定方向定位通道位置,建立该方向椎弓根通道。通过定位定量分析确定通道内最大螺钉通道位置、半径大小、长度及最佳方向轴,确定通道及最大螺钉通道在椎板表面的定位区,并三维可视化显示。结果建立右侧椎弓根25°外偏角和0°头尾角及左侧椎弓根20°外偏角和0°头尾角方向通道及其最大螺钉通道,确定通道及其最大螺钉通道在椎板的定位区、进钉轴范围、最佳中心轴、最大螺钉通道半径大小及长度。结论应用现代影像技术和计算机辅助设计技术可以个体化三维精确定位定量设计椎弓根通道。

【Abstract】 [Objectives] To research the digitalized anatomical method of pedicle channel. To provide safe, effective and standard theoretical evidence for pedicle screw fixation. [Methods] CT scan images of lumbar of a healthy adult were digitally analyzed by Mimics 8.11 software (Materialise) and established their three-dimensional (3D) models. These models were saved as .stl format, then import Surface 10.0 software to computer aided design .Firstly, the cross section plane were located in the vertebra middle sagittal and the transverse direction. Secondly, lumbar pedicle channel were projected to the plane along the vertical direction and obtained inner borderline of each direction project, respectively , meanwhile fitted the outer and inner circle of each inner borderline, as well as. Then recorded the radius of the outer and inner circle of each inner borderline and its center coordinate point, measured the channel length of inner circle of each inner borderline approaching pedicle. [Results] The pedicle channel and the largest screw channel were reconstructed in the 25° angle of transverse plane and 0° angle of sagittal plane direction in left pedicle. Also reconstructed pedicle channel and the largest screw channel in the 20°angle of transverse plane and 0° angle of sagittal plane direction in right pedicle. We confirmed the size of location area, the axis range of entrance, the best central axis, and the largest screw channel length and radius. [Conclusion] Modern imaging methods and computer-aided design techniques can provide precise location and pinpoint three-dimensional design pedicle channel individually.

【关键词】 椎弓根通道投影数字技术
【Key words】 pediclescrew channelprojectionDigitalized techique
【基金】 湖南省自然科学基金(02JJY2028);国家自然科学基金(30371449);国家自然科学基金(60473121)
  • 【文献出处】 中国现代医学杂志 ,China Journal of Modern Medicine , 编辑部邮箱 ,2007年10期
  • 【分类号】R319;R687.3
  • 【被引频次】29
  • 【下载频次】265
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