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Automatic perceptual color map generation for realistic volume visualization.

机译:自动感知色图生成,可实现逼真的体积可视化。

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摘要

Advances in computed tomography imaging technology and inexpensive high performance computer graphics hardware are making high-resolution, full color (24-bit) volume visualizations commonplace. However, many of the color maps used in volume rendering provide questionable value in knowledge representation and are non-perceptual thus biasing data analysis or even obscuring information. These drawbacks, coupled with our need for realistic anatomical volume rendering for teaching and surgical planning, has motivated us to explore the auto-generation of color maps that combine natural colorization with the perceptual discriminating capacity of grayscale. As evidenced by the examples shown that have been created by the algorithm described, the merging of perceptually accurate and realistically colorized virtual anatomy appears to insightfully interpret and impartially enhance volume rendered patient data.
机译:计算机断层扫描成像技术的进步和廉价的高性能计算机图形硬件使高分辨率的全彩色(24位)体积可视化变得司空见惯。但是,在体绘制中使用的许多色图在知识表示中提供可疑的值,并且是非感知性的,因此会偏向数据分析甚至模糊信息。这些缺点,再加上对教学和手术计划的逼真的解剖体绘制的需求,促使我们探索自动生成的彩色图,该图将自然着色与可感知的灰度辨别能力相结合。如已显示的由所述算法创建的示例所证明的,感知准确且逼真的彩色虚拟解剖结构的合并似乎可以深刻地解释并公正地增强渲染的患者数据量。

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