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使用局部邻域统计的手绘传递函数环境光遮挡实时计算机断层扫描体积可视化

Real-Time Computed Tomography Volume Visualization with Ambient Occlusion of Hand-Drawn Transfer Function Using Local Vicinity Statistic.

作者信息

Kim Jaewoo, Ha Taejun, Kye Heewon

机构信息

Division of Computer Engineering, Hansung University, Seoul, Korea.

出版信息

Healthc Inform Res. 2019 Oct;25(4):297-304. doi: 10.4258/hir.2019.25.4.297. Epub 2019 Oct 31.

Abstract

OBJECTIVES

In this paper, we present an efficient method to visualize computed tomography (CT) datasets using ambient occlusion, which is a global illumination technique that adds depth cues to the output image. We can change the transfer function (TF) for volume rendering and generate output images in real time.

METHODS

In preprocessing, the mean and standard deviation of each local vicinity are calculated. During rendering, the ambient light intensity is calculated. The calculation is accelerated on the assumption that the CT value of the local vicinity of each point follows the normal distribution. We approximate complex TF forms with a smaller number of connected line segments to achieve additional acceleration. Ambient occlusion is combined with the existing local illumination technique to produce images with depth in real time.

RESULTS

We tested the proposed method on various CT datasets using hand-drawn TFs. The proposed method enabled real-time rendering that was approximately 40 times faster than the previous method. As a result of comparing the output image quality with that of the conventional method, the average signal-to-noise ratio was approximately 40 dB, and the image quality did not significantly deteriorate.

CONCLUSIONS

When rendering CT images with various TFs, the proposed method generated depth-sensing images in real time.

摘要

目的

在本文中,我们提出一种使用环境光遮蔽来可视化计算机断层扫描(CT)数据集的有效方法,环境光遮蔽是一种全局光照技术,可向输出图像添加深度线索。我们可以更改体绘制的传递函数(TF)并实时生成输出图像。

方法

在预处理中,计算每个局部邻域的均值和标准差。在渲染过程中,计算环境光强度。在假设每个点的局部邻域的CT值服从正态分布的前提下加速计算。我们用较少数量的连接线段来近似复杂的TF形式以实现额外加速。环境光遮蔽与现有的局部光照技术相结合,实时生成具有深度的图像。

结果

我们使用手绘TF在各种CT数据集上测试了所提出的方法。所提出的方法实现了实时渲染,速度比以前的方法快约40倍。将输出图像质量与传统方法进行比较的结果是,平均信噪比约为40 dB,并且图像质量没有明显下降。

结论

在用各种TF渲染CT图像时,所提出的方法实时生成了深度感知图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57a1/6859260/c2676c280bec/hir-25-297-g001.jpg

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