侧颅底塑化切片三维计算重建。

Ming-Guo Qiu, Shao-Xiang Zhang, Zheng-Jin Liu, Li-Wen Tan, Yu-Su Wang, Jun-Hui Deng, Ze-Sheng Tang
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引用次数: 17

摘要

本研究旨在建立侧颅底三维重建模型,探讨重要结构的空间关系,为侧颅底手术及临床影像诊断提供形态学依据。从头部两侧锯出边缘约80 mm的块,其中包含侧颅底区域和邻近结构,并使用塑化技术在横向平面上以700微米的厚度进行切片。在SGI工作站上,选择contourds - marching cubes算法重建侧颅底的三维模型。采用塑化技术,在连续宏观切片中获得了结构的精确对准。重建图像质量清晰完善,特别是在颅骨骨性背景下显示时,能直观显示侧颅底各结构的空间位置和复杂的相邻关系。显示或旋转一张包含50个切片的图像所花费的时间为1.5秒;所有重建的结构都可以单独或联合表示,并在任何平面上旋转。塑化技术和计算机辅助三维重建在研究外侧颅底复杂解剖中具有明显的优势。塑化技术提供了比CT扫描获得的更高分辨率的横截面图像。计算机三维重建对于研究侧颅底的空间解剖非常重要,可以作为用其他技术创建模型的标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional computational reconstruction of lateral skull base with plastinated slices.

The goals of this study were to build the 3D reconstructed model of lateral skull base and to explore the spatial relationships of the important structures for providing the morphological basis for lateral skull base surgery and clinical image diagnosis. Blocks with edges of about 80 mm containing the lateral skull base region and adjacent structures were sawn out from both sides of the heads and sectioned on transverse plane at a thickness of 700 microm using a plastination technique. On an SGI workstation, a Contours-Marching cubes algorithm was selected to reconstruct the 3D model of the lateral skull base. Accurate alignment of the structures in the serial macroscopic sections was obtained by the employment of the plastination technique. The quality of the reconstructed images was distinct and perfect, specifically, the spatial positions and complicated adjacent relationships of various structures of the lateral skull base can be shown in direct viewing when they are displayed in background of the cranial bony substance. The time spent in displaying or rotating one image including 50 sections was 1.5 sec; all reconstructed structures can be represented individually or jointly and rotated in any plane. The plastination technique and computer-aided 3D reconstruction have an obvious advantage in the study of the complex anatomy of the lateral skull base. Plastination technique provides cross-section images of a higher resolution than those obtained from CT scanning. The computerized 3D reconstruction is important in studying the spatial anatomy of the lateral skull base and can serve as a standard for models created with other techniques.

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