Suppr超能文献

使用双向合成和块跳过的最大强度投影。

Maximum intensity projection using bidirectional compositing with block skipping.

作者信息

Kwon Ohjae, Kang Sung-Tae, Kim Soo-Hong, Kim Yoon-Ho, Shin Yeong-Gil

机构信息

Department of Computer Science and Engineering, Seoul National University, Seoul, Korea.

Department of Computer Software Engineering, Sangmyung University, Seoul, Korea.

出版信息

J Xray Sci Technol. 2015;23(1):33-44. doi: 10.3233/XST-140468.

Abstract

BACKGROUND

Maximum intensity projection (MIP) is a volume rendering technique that determines the pixel intensity as the maximum of all values sampled along the viewing direction. MIP has been successfully applied to diagnose bone fractures in computed tomography (CT) and the stenosis of vascular structures in magnetic resonance angiography (MRA). However, MIP has a major drawback in that the depth and occlusion information cannot be perceived in the output images. The most universal way to alleviate this problem is to occasionally change the viewpoint for depth perception. To support this function in real time, MIP should be performed at an interactive frame rate.

OBJECTIVE

We develop an efficient rendering algorithm for MIP so that MIP is performed at an interactive frame rate without a loss of image quality.

METHODS

The proposed method predicts the position of the maximum intensity for each ray using blockwise maximum bounds, after which it performs bidirectional compositing toward both ends of the ray from this predicted position. During the compositing process, block skipping is used as an acceleration method.

RESULTS

The proposed method outperformed the block skipping method using the sequential compositing with a speed-up factor of 2.2 ∼ 2.8 depending on the data set without any degradation of the image quality.

CONCLUSION

We proposed an efficient rendering technique for MIP. Our method was superior to the conventional block skipping method with respect to the rendering speed and degree of performance consistency.

摘要

背景

最大强度投影(MIP)是一种体绘制技术,它将像素强度确定为沿观察方向采样的所有值中的最大值。MIP已成功应用于计算机断层扫描(CT)中的骨折诊断以及磁共振血管造影(MRA)中血管结构的狭窄诊断。然而,MIP有一个主要缺点,即输出图像中无法感知深度和遮挡信息。缓解此问题最常用的方法是偶尔改变视角以进行深度感知。为了实时支持此功能,MIP应以交互式帧率执行。

目的

我们开发一种用于MIP的高效渲染算法,以便在不损失图像质量的情况下以交互式帧率执行MIP。

方法

所提出的方法使用逐块最大边界预测每条光线的最大强度位置,然后从该预测位置向光线两端进行双向合成。在合成过程中,使用块跳过作为加速方法。

结果

所提出的方法优于使用顺序合成的块跳过方法,根据数据集,加速因子为2.2至2.8,且图像质量没有任何下降。

结论

我们提出了一种用于MIP的高效渲染技术。我们的方法在渲染速度和性能一致性程度方面优于传统的块跳过方法。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验