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一种用于颅颈交界区手术模拟的三维重建新技术。

A novel technique for three-dimensional reconstruction for surgical simulation around the craniocervical junction region.

作者信息

Liu Guang-Jiu, Zhang Shao-Xiang, Qiu Ming-Guo, Tan Li-Wen, Li Qi-Yu, Li Kai

机构信息

Department of Anatomy, Third Military Medical University, Chongqing, People's Republic of China.

出版信息

Int Surg. 2011 Jul-Sep;96(3):274-80. doi: 10.9738/cc14.1.

Abstract

Performing surgeries on the craniocervical junction presents a technical challenge for operating surgeons. Three-dimensional (3D) reconstruction and surgical simulation have improved the efficacy and success rate of surgeries. The aim of this study was to create a 3D, digitized visible model of the craniocervical junction region to help realize accurate simulation of craniocervical surgery on a graphic workstation. Transverse sectional anatomy data for the study were chosen from the first Chinese visible human. Manual axial segmentation of the skull base, cervical spine, cerebellum, vertebral artery, internal carotid artery, sigmoid sinus, internal jugular vein, brain stem, and spinal cord were carried out by using Photoshop software. The segmented structures were reconstructed in 3 dimensions with surface and volume rendering to accurately display 3D models spatially. In contrast to conventional 3D reconstruction techniques that are based on computed tomography and magnetic resonance imaging Digital Imaging and Communications in Medicine (DICOM) inputs and provide mostly osseous details, this technique can help to illustrate the surrounding soft tissue structure and provide a realistic surgical simulation. The reconstructed 3D model was successfully used in simulating complex procedures in the virtual environment, including the transoral approach, bone drillings, and clivus resection.

摘要

对颅颈交界区进行手术对手术医生来说是一项技术挑战。三维(3D)重建和手术模拟提高了手术的疗效和成功率。本研究的目的是创建一个颅颈交界区的三维数字化可视模型,以帮助在图形工作站上实现颅颈手术的精确模拟。该研究的横断面解剖数据选自首例中国可视化人体。使用Photoshop软件对头颅底部、颈椎、小脑、椎动脉、颈内动脉、乙状窦、颈内静脉、脑干和脊髓进行手动轴向分割。通过表面和容积渲染对分割后的结构进行三维重建,以在空间上准确显示三维模型。与基于计算机断层扫描和磁共振成像医学数字成像和通信(DICOM)输入且主要提供骨质细节的传统三维重建技术相比,该技术有助于展示周围的软组织结构并提供逼真的手术模拟。重建的三维模型成功用于在虚拟环境中模拟复杂手术过程,包括经口入路、骨钻孔和斜坡切除术。

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