Efficient Rendering of Extrudable Curvilinear Volumes

Steven Martin, Han-Wei Shen, R. Samtaney
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引用次数: 2

Abstract

We present a technique for memory-efficient and time-efficient volume rendering of curvilinear adaptive mesh refinement data defined within extrudable computational spaces. One of the main challenges in the ray casting of curvilinear volumes is that a linear viewing ray in physical space will typically correspond to a curved ray in computational space. The proposed method utilizes a specialized representation of curvilinear space that provides for the compact representation of parameters for transformations between computational space and physical space, without requiring extensive preprocessing. By simplifying the representation of computational space positions using an extrusion of a profile surface, the requisite transformations can be greatly simplified. Our implementation achieves interactive rates with minimal load time and memory overhead using commodity graphics hardware with real-world data.
有效渲染可挤压曲线体
我们提出了一种在可挤压计算空间内定义的曲线自适应网格细化数据的内存高效和时间高效体绘制技术。曲线体光线投射的主要挑战之一是物理空间中的线性观察光线通常对应于计算空间中的弯曲光线。所提出的方法利用曲线空间的专门表示,为计算空间和物理空间之间的转换提供紧凑的参数表示,而不需要大量的预处理。通过使用轮廓表面的挤压简化计算空间位置的表示,可以大大简化必要的转换。我们的实现以最小的加载时间和内存开销实现交互速率,使用具有真实数据的商品图形硬件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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