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髁突作为半侧颜面短小畸形牵张成骨三维规划的旋转点。

Condyle as the point of rotation for 3-D planning of distraction osteogenesis for hemifacial microsomia.

作者信息

Paeng Jun-Young, Lee Jee-Ho, Lee Jong-Ho, Kim Myung-Jin

机构信息

Department of Oral and Maxillofacial Surgery, Dental Research Institute, College of Dentistry, Seoul National University, Seoul, Korea.

出版信息

J Craniomaxillofac Surg. 2007 Mar;35(2):91-102. doi: 10.1016/j.jcms.2006.12.004. Epub 2007 Apr 19.

Abstract

AIM

The purpose of this study is to present an exact simulation method for mandibular rotational movement in distraction osteogenesis for hemifacial microsomia.

METHODS

Three-dimensional (3-D) surgery simulation software programmes (V-Works and V-Surgery; Cybermed, Seoul, Korea) were used, based on 3-D CT data in addition to the conventional data, which included facial photography, panoramic radiograph, cephalogram, and dental models. After measuring the mandibular deficiency (horizontal and vertical) from a 3-D model reconstructed using the software, the angulation of the distraction device to the mandibular border (posterior or inferior) was determined. The rotation axis in the V-Works simulation was defined as the line perpendicular to the plane made by condylion and the distraction vector location on the mandible. The mandible moves along the plane around this rotational axis during distraction. After the 3-D simulation with the software programme, mock surgery on a rapid prototyping model was performed. This planning method was applied to models of two hemifacial microsomia patients.

RESULTS

With this protocol, it was possible to simulate the rotational movement of the mandible on the axis passing through the condylar head of the unaffected side.

CONCLUSION

The sequential planning procedure presented in this paper is considered to be helpful in performing effective preoperative simulation of distraction osteogenesis for hemifacial microsomia.

摘要

目的

本研究旨在提出一种精确的模拟方法,用于半侧颜面短小畸形牵张成骨术中下颌骨的旋转运动。

方法

使用三维(3-D)手术模拟软件程序(V-Works和V-Surgery;韩国首尔Cybermed公司),基于3-D CT数据以及传统数据,传统数据包括面部照片、全景X线片、头颅侧位片和牙模。通过软件重建三维模型测量下颌骨缺损(水平和垂直方向)后,确定牵张装置相对于下颌骨边界(后方或下方)的角度。V-Works模拟中的旋转轴定义为垂直于由髁突点和下颌骨上牵张向量位置所构成平面的直线。牵张过程中,下颌骨围绕该旋转轴沿平面移动。使用软件程序进行三维模拟后,在快速成型模型上进行模拟手术。该规划方法应用于两名半侧颜面短小畸形患者的模型。

结果

采用该方案,可以模拟下颌骨在通过未受影响侧髁突头部的轴上的旋转运动。

结论

本文提出的序贯规划程序被认为有助于对半侧颜面短小畸形牵张成骨术进行有效的术前模拟。

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