Fast volume segmentation with simultaneous visualization using programmable graphics hardware

A. Sherbondy, Michael Houston, S. Napel
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引用次数: 127

Abstract

Segmentation of structures from measured volume data, such as anatomy in medical imaging, is a challenging data-dependent task. In this paper, we present a segmentation method that leverages the parallel processing capabilities of modern programmable graphics hardware in order to run significantly faster than previous methods. In addition, collocating the algorithm computation with the visualization on the graphics hardware circumvents the need to transfer data across the system bus, allowing for faster visualization and interaction. This algorithm is unique in that it utilizes sophisticated graphics hardware functionality (i.e., floating point precision, render to texture, computational masking, and fragment programs) to enable fast segmentation and interactive visualization.
快速体积分割与同时可视化使用可编程的图形硬件
从测量体积数据中分割结构,如医学成像中的解剖,是一项具有挑战性的数据依赖任务。在本文中,我们提出了一种分割方法,该方法利用现代可编程图形硬件的并行处理能力,以便比以前的方法运行得快得多。此外,将算法计算与图形硬件上的可视化结合起来可以避免跨系统总线传输数据的需要,从而实现更快的可视化和交互。该算法的独特之处在于它利用复杂的图形硬件功能(即,浮点精度,渲染到纹理,计算掩蔽和片段程序)来实现快速分割和交互式可视化。
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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