Chen Gang, Zhang Shao-Xiang, Tan Li-Wen, Liu Guang-Jiu, Li Kai, Dong Jia-Hong
Southwest Hospital, Institute of Hepato-biliary Surgery, Third Military Medical University, 30 Gao tanyan Street, Sha pingba, 400038 Chongqing, China.
Surg Radiol Anat. 2009 Jul;31(6):453-60. doi: 10.1007/s00276-009-0467-1. Epub 2009 Mar 12.
To build a three-dimensional (3D) visible model of human liver and provide visualization of precise anatomical structures for making plans for hepatic operations and obtain accurate simulation of liver on computer.
Based on the Chinese Visible Human data set, the hepatic structures were precisely segmented by Photoshop software. Then the segmented structures were reconstructed in surface rendering method and the hepatic parenchyma and the other parts of upper abdomen were reconstructed with volume rendering method by using our software on personal computer.
A 3D model of human liver and its surrounding structures was built. 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. This model can help doctors to understand the spatial structure of the liver and its surrounding organs and also help surgeons to devise a reasonable surgical plan and reduce the risk of surgical malpractice.
Combining volume-rendering reconstruction with surface rendering reconstruction can overcome some of the defects of both rendering reconstructions. The reconstructed liver and the main internal structures are realistic, which demonstrate the natural shape and exact position of the structures. They provide an accurate anatomical model for Chinese adult and also provide a basis for performing virtual hepatic operation.
构建人体肝脏的三维(3D)可视化模型,为肝脏手术规划提供精确解剖结构的可视化,并在计算机上实现肝脏的精确模拟。
基于中国可视人数据集,利用Photoshop软件对肝脏结构进行精确分割。然后,通过表面渲染方法对分割后的结构进行重建,并使用我们的软件在个人计算机上通过体渲染方法对上腹部的肝脏实质和其他部分进行重建。
构建了人体肝脏及其周围结构的3D模型。重建后的结构可以单独、分组或整体显示,并能在3D空间中以不同速度连续旋转。该模型有助于医生了解肝脏及其周围器官的空间结构,也有助于外科医生制定合理的手术方案,降低手术失误风险。
将体渲染重建与表面渲染重建相结合可以克服两种渲染重建的一些缺陷。重建的肝脏和主要内部结构逼真,展示了结构的自然形态和确切位置。它们为中国成年人提供了精确的解剖模型,也为进行虚拟肝脏手术提供了基础。