首页> 外文会议>Visualization, Image-Guided Procedures, and Display; Progress in Biomedical Optics and Imaging; vol.7,no.27 >Interactive Dual-Volume Rendering Visualization with Real-Time Fusion and Transfer Function Enhancement
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Interactive Dual-Volume Rendering Visualization with Real-Time Fusion and Transfer Function Enhancement

机译:具有实时融合和传递函数增强功能的交互式双体积渲染可视化

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Dual-modality imaging scanners combining functional PET and anatomical CT constitute a challenge in volumetric visualization that can be limited by the high computational demand and expense. This study aims at providing physicians with multi-dimensional visualization tools, in order to navigate and manipulate the data running on a consumer PC. We have maximized the utilization of pixel-shader architecture of the low-cost graphic hardware and the texture-based volume rendering to provide visualization tools with high degree of interactivity. All the software was developed using OpenGL and Silicon Graphics Inc. Volumizer, tested on a Pentium mobile CPU on a PC notebook with 64M graphic memory. We render the individual modalities separately, and performing real-time per-voxel fusion. We designed a novel "alpha-spike" transfer function to interactively identify structure of interest from volume rendering of PET/CT. This works by assigning a non-linear opacity to the voxels, thus, allowing the physician to selectively eliminate or reveal information from the PET/CT volumes. As the PET and CT are rendered independently, manipulations can be applied to individual volumes, for instance, the application of transfer function to CT to reveal the lung boundary while adjusting the fusion ration between the CT and PET to enhance the contrast of a tumour region, with the resultant manipulated data sets fused together in real-time as the adjustments are made. In addition to conventional navigation and manipulation tools, such as scaling, LUT, volume slicing, and others, our strategy permits efficient visualization of PET/CT volume rendering which can potentially aid in interpretation and diagnosis.
机译:结合了功能性PET和解剖CT的双模态成像扫描仪在体积可视化方面构成了挑战,这可能会受到较高的计算需求和费用的限制。这项研究旨在为医生提供多维可视化工具,以便导航和操纵在消费类PC上运行的数据。我们已最大限度地利用了低成本图形硬件的像素着色器体系结构和基于纹理的体绘制,以提供具有高度交互性的可视化工具。所有软件均使用OpenGL和Silicon Graphics Inc. Volumizer开发,并在具有64M图形内存的PC笔记本电脑上的Pentium移动CPU上进行了测试。我们分别渲染各个模态,并执行实时的每个体素融合。我们设计了一种新颖的“ alpha-spike”传递函数,以从PET / CT的体积渲染中交互式地识别感兴趣的结构。这通过为体素分配非线性不透明度来起作用,因此,允许医生从PET / CT体积中选择性消除或显示信息。由于PET和CT是独立绘制的,因此可以对单个体积进行操作,例如,将传递函数应用于CT以显示肺边界,同时调节CT和PET之间的融合率以增强肿瘤区域的对比度,并在进行调整时将最终的操纵数据集实时融合在一起。除了常规的导航和操纵工具(例如缩放,LUT,体积切片等)之外,我们的策略还可以对PET / CT体积渲染进行有效的可视化,从而有可能有助于解释和诊断。

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