Optimal kVp Selection for Contrast CT Imaging Based on a Projection-domain Method.

Xue Rui, Yannan Jin, Paul F FitzGerald, Adam Alessio, Paul Kinahan, Bruno De Man
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Abstract

Computed Tomography (CT) has been in clinical use for several decades. The number of CT scans has increased significantly worldwide, which results in increased radiation dose delivered to the general population. Many technologies have been developed to minimize the dose from CT scans, including scanner hardware improvements, task-specific protocol design and advanced reconstruction algorithms. In this study, we focused on selection of X-ray tube voltage and filtration to achieve optimal dose efficiency given required image quality, more specifically the contrast to noise ratio. Our approach differs from previous studies in two aspects. Typically, Monte-Carlo simulation is used to estimate dose in simulations, but this is computationally costly. We instead use a projection-domain dose estimation method. No image reconstruction is required for the projection-domain method, which further simplifies the analysis. This study also includes tantalum, a new contrast agent, in addition to soft tissue (water), bone and iodine contrast. Optimal tube voltages and filtration are identified as a function of phantom size. The simulation analysis is confirmed with a limited phantom study.

Abstract Image

Abstract Image

基于投影域方法的对比CT成像最佳kVp选择。
计算机断层扫描(CT)已经在临床应用了几十年。CT扫描的数量在世界范围内显著增加,这导致普通人群的辐射剂量增加。为了最大限度地减少CT扫描的剂量,已经开发了许多技术,包括扫描仪硬件改进、特定任务的协议设计和先进的重建算法。在本研究中,我们重点关注x射线管电压和滤波的选择,以达到最佳的剂量效率,给定所需的图像质量,更具体地说,对比度噪声比。我们的方法与以往的研究在两个方面有所不同。通常,在模拟中使用蒙特卡罗模拟来估计剂量,但这在计算上是昂贵的。我们转而使用投影域剂量估计方法。投影域法不需要重建图像,进一步简化了分析。本研究还包括钽,一种新的造影剂,除了软组织(水),骨和碘造影剂。最佳管电压和滤波被确定为幻体尺寸的函数。仿真分析通过有限的仿真研究得到了证实。
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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