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直接体绘制中的局部环境光遮蔽。

Local ambient occlusion in direct volume rendering.

机构信息

Department of Visual Information Technology and Applications, Center for Medical Image Science and Visualization, Linköping University, Norrköping, Sweden.

出版信息

IEEE Trans Vis Comput Graph. 2010 Jul-Aug;16(4):548-59. doi: 10.1109/TVCG.2009.45.

Abstract

This paper presents a novel technique to efficiently compute illumination for Direct Volume Rendering using a local approximation of ambient occlusion to integrate the intensity of incident light for each voxel. An advantage with this local approach is that fully shadowed regions are avoided, a desirable feature in many applications of volume rendering such as medical visualization. Additional transfer function interactions are also presented, for instance, to highlight specific structures with luminous tissue effects and create an improved context for semitransparent tissues with a separate absorption control for the illumination settings. Multiresolution volume management and GPU-based computation are used to accelerate the calculations and support large data sets. The scheme yields interactive frame rates with an adaptive sampling approach for incrementally refined illumination under arbitrary transfer function changes. The illumination effects can give a better understanding of the shape and density of tissues and so has the potential to increase the diagnostic value of medical volume rendering. Since the proposed method is gradient-free, it is especially beneficial at the borders of clip planes, where gradients are undefined, and for noisy data sets.

摘要

本文提出了一种新的技术,通过局部近似环境光遮挡来有效地计算直接体绘制的光照,从而整合每个体素的入射光强度。这种局部方法的一个优点是避免了完全阴影区域,这在许多体积渲染应用中是一个理想的特性,例如医学可视化。本文还提出了其他传输函数交互作用,例如,用发光组织效果突出特定结构,并为半透明组织创建一个单独的吸收控制,以改善光照设置的上下文。多分辨率体积管理和基于 GPU 的计算用于加速计算并支持大型数据集。该方案采用自适应采样方法,在任意传输函数变化下逐步细化光照,以实现交互式帧率。光照效果可以更好地理解组织的形状和密度,因此有可能提高医学体积渲染的诊断价值。由于所提出的方法是无梯度的,因此它在裁剪平面的边界处特别有益,在那里梯度是未定义的,并且对于噪声数据集也是有益的。

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