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CT检测室的3D模型设计
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作者 陈红 谢勤岚 《科教导刊》 2017年第8Z期36-38,共3页
结合CT机和CT室的相关知识,介绍了一种对CT机和简易CT室的3DS MAX模型设计方法。设计步骤为:安装软件和插件、准备建模的工作、制作3D数据模型、渲染并得到结果。论文简介了3DS MAX的基本内容和工作步骤,3D建模技术的定义和原理。最终... 结合CT机和CT室的相关知识,介绍了一种对CT机和简易CT室的3DS MAX模型设计方法。设计步骤为:安装软件和插件、准备建模的工作、制作3D数据模型、渲染并得到结果。论文简介了3DS MAX的基本内容和工作步骤,3D建模技术的定义和原理。最终获得的模型可用于医学影像学和医疗器械专业的虚拟实验教学,或用于放射科或影像科的实习教学中,也可用于医学工程师的业务培训中,提高实践教学或专业培训效果。 展开更多
关键词 三维建模建设 3DS MAX CT室 数据 VR渲染器
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SDOG-based multi-scale 3D modeling and visualization on global lithosphere 被引量:12
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作者 YU JieQing WU LiXin +1 位作者 ZI GuoJie GUO ZengZhang 《Science China Earth Sciences》 SCIE EI CAS 2012年第6期1012-1020,共9页
The structure of global lithosphere is very important to the scientific researches of tectonic movement, geodynamic process, mantle convection, resource exploration, and disaster prevention and reduction. Three-dimens... The structure of global lithosphere is very important to the scientific researches of tectonic movement, geodynamic process, mantle convection, resource exploration, and disaster prevention and reduction. Three-dimensional (3D) spatial modelling and visualization is an effective tool for lithosphere researches. However, both the isoline/profile methods and the Euclidean-based 3D modelling methods cannot meet the requirement of real 3D modeling of global lithosphere, whereas the recently developed global 3D grid methods have some defects on grid design, such as grid shrinkage, overlapping, non-orthogonality, and nonlatitude-longitude consistency. In this paper, Spheroid Degenerated-Octree Grid (SDOG), a non-overlapping, non-shrinking, orthogonal, latitude-longitude consistent grid in the spheroidal manifold space, was chosen as the basic grid for global lithosphere 3D modeling and visualization. The SDOG-based methods of spatial representation and modelling of lithosphere were proposed. A multi-scale model of lithosphere was designed, and the multi-scale modeling and multi-mode visualization were realized at the full advantages of SDOG in multi-hierarchical and multi-resolution and the properties of lithosphere in multi-semantic. It shows that (1) the SDOG-based method has not only overcome the defects of the current global 3D grid, but also reflected the spherical features of lithosphere more realistically and naturally than the traditional methods, providing a novel solution for global modeling, numeric simulating, and data sharing of lithosphere; and (2) more detailed plates division, more precise geo-layer structure, plates boarder and surface concave-convex, and more rich lithosphere properties are revealed as the scale-model moves on. 展开更多
关键词 Spheroid Degenerated-Octree Grid (SDOG) LITHOSPHERE 3D manifold modeling VISUALIZATION global 3D grid
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