中国组织工程研究 ›› 2012, Vol. 16 ›› Issue (35): 6489-6493.doi: 10.3969/j.issn.2095-4344.2012.35.006

• 人工假体 artificial prosthesis • 上一篇    下一篇

国人胫骨截面矢量化测量与解剖型假体形态的设计

韩贵宾,张 寿,陈建强,邢 势,崔可赜,范忠诚   

  1. 海口市人民医院骨科中心,海南省海口市 570208
  • 收稿日期:2012-05-09 修回日期:2012-06-20 出版日期:2012-08-26 发布日期:2012-08-26
  • 通讯作者: 张寿,主任医师,海口市人民医院骨科中心,海南省海口市 570208 shouzhang456@163.com
  • 作者简介:韩贵宾★,男,1974年生,吉林省白山市人,汉族,2008年北华大学毕业,硕士,副主任医师,主要从事关节外科临床研究。 hanguibin456@163.com

Vectorial measurement on tibial sections for the shape design of anatomic prothesis in Chinese

Han Gui-bin, Zhang Shou, Chen Jian-qiang, Xing Shi, Cui Ke-ze, Fan Zhong-cheng   

  1. Department of Orthopedics, Haikou People’s Hospital, Haikou 570208, Hainan Province, China
  • Received:2012-05-09 Revised:2012-06-20 Online:2012-08-26 Published:2012-08-26
  • Contact: Zhang Shou, Chief physician, Department of Orthopedics, Haikou People’s Hospital, Haikou 570208, Hainan Province, China shouzhang456@163.com
  • About author:Han Gui-bin★, Master, Associate chief physician, Department of Orthopedics, Haikou People’s Hospital, Haikou 570208, Hainan Province, China hanguibin456@163.com

摘要:

背景:目前对于胫骨近端截面形态的研究基本都是单纯测量其横径及若干条纵径的数量关系,而缺乏位置关系。
目的:获取国人胫骨截骨面的矢量化数据,从而探讨解剖型胫骨假体形态的设计。
方法:选取于海口市人民医院就诊的膝关节骨性关节炎患者26例(44膝)。通过CT三维重建获得相当于膝关节置换过程中胫骨截骨面的影像,按研究设计方案建立坐标,由影像内侧横径起每10°递增绘制由坐标中点至影像周边的线段,测量各线段的长度获取矢量化数据,根据所得数据提供解剖型胫骨假体外形的设计方案。
结果与结论:按设计方案在胫骨截面影像上建立坐标具有可行性及可重复性;坐标中10°~350°各径线长度与内侧横径长度均具有相关性;预先设定内侧横径长度,按比值均数推算各角度径线长度,在坐标中标注其外周各点并给予连接,可得到预制假体的外形。矢量化测量可同时获得胫骨截面数据的数量及相应位置关系,对国人解剖型胫骨假体形态的设计有参考价值。

关键词: 胫骨, 矢量化测量, 解剖型假体, 位置关系, 三维CT, 人工假体, 膝关节置换

Abstract:

BACKGROUND: At present, almost all the studies about anatomy of the section of proximal tibia focused on its quantitative relations between transverse diameter and several sagittal diameters but ignored their relative position.
OBJECTIVE: To study the shape design of anatomic prothesis by measuring the vectorial data of tibial sections in Chinese.
METHODS: Twenty-six cases/44 knees with knee osteoarthritis were selected from Haikou People’s Hospital. After harvesting the images of the tibial sections the same as in total knee arthroplasty by CT three-dimensional reconstruction technique, we set up coordinates in them and marked out segments from the center of the coordinates to the edges of the section images per 10°. On the basis of the data got by measuring the lengths of the segments, we guided the shape design of anatomic prosthesis.
RESULTS AND CONCLUSION: The coordinates set up according to the design proposal in the images of tibial sections were feasible and repeatable. From 10°-350°, the length of every segment had dependence with the length of transverse diameter. If we preestablish a length of transverse diameter discretionarily, we can calculate all the lengths of 10°-350° segments through the average ratios of every segments. Marking all the points of those segments’ peripheral region and connecting them with continuous line, we can get the shape of tibial anatomic prosthesis. Measuring the tibial sections vectorially can get the data of the tibial sections and get the corresponding positional relationship, and is significant for the shape design of anatomic prothesis in Chinese.

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