Li Qi-Yu, Zhang Shao-Xiang, Heng Pheng-Ann, Liu Zheng-Jin, Lin Zhi-Fu, Tan Li-Wen, Xie Yong-Min
Department of Anatomy, Third Military Medical University, Gao Tanyan Street 30, Sha Pingba Chongqing 400038, China.
Comput Med Imaging Graph. 2006 Mar;30(2):89-94. doi: 10.1016/j.compmedimag.2005.12.004. Epub 2006 Feb 24.
A 3D digitized visible model of human cerebrum was built to provide anatomical structure for making plans of cerebral surgical operation and realizing accurate simulation of cerebrum on computer.
Transverse sectional anatomy data of the cerebrum were chosen from the first Chinese visible human (one male and one female). Semi-automated segmentation and Photoshop software were selected to segment cerebral cortex, white matter, basal nuclei, lateral ventricle, hippocampus, etc. On personal computer, the segmented structures were reconstructed in 3D with volume rendering reconstruction and surface rendering reconstruction.
Two accurately segmented images of the main structures of cerebrum were completed. The reconstructed structures can be displayed singly, in small groups or as a whole and can be continuously rotated in 3D space at different velocities.
Combining volume-rendering reconstruction with surface rendering reconstruction overcomes the defects of surface rendering reconstruction that lack of internal anatomical information, which provides a new method for 3D reconstruction. The reconstructed cerebrum and the main internal structures are realistic, which demonstrates the natural shape and exact position of the structures. It provides an accurate model for the automated segmentation algorithmic study and provides a digitized anatomical mode of cerebrum.
构建人脑三维数字化可视模型,为脑外科手术方案制定及计算机上实现脑的精确模拟提供解剖结构。
选取首例中国可视化人体(一男一女)的脑横断解剖数据。选用半自动分割及Photoshop软件分割大脑皮质、白质、基底核、侧脑室、海马等。在个人计算机上,采用容积再现重建和表面再现重建对分割后的结构进行三维重建。
完成了脑主要结构的两张精确分割图像。重建后的结构可单独、分组或整体显示,并能在三维空间以不同速度连续旋转。
容积再现重建与表面再现重建相结合克服了表面再现重建缺乏内部解剖信息的缺陷,为三维重建提供了新方法。重建的脑及主要内部结构逼真,展示了结构的自然形态和确切位置。为自动分割算法研究提供了精确模型,提供了数字化脑解剖模型。