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Quantitative Investigations of Megavoltage Computed Tomography

机译:兆伏计算机断层扫描的定量研究

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Megavoltage computed tomography (MVCT) has been an active area of research and development in image guided radiation therapy. We have been investigating a particular implementation of MVCT in conjunction with studies of the potential for tomotherapy with a Cobalt-60 radiation source. In this paper, we present results comparing MVCT using a Co-60 source and a 4 MV linear accelerator to conventional kVCT imaging. The Co-60 and linac MVCT measurements were obtained with a first generation benchtop CT imager; the KVCT measurements were obtained using a Philips AcQSim CT Simulator). Phantoms containing various inserts ranging in density from air, through lung, soft tissue and bone equivalent materials and extending to high atomic number metals were imaged with the three modalities. The results enable characterization of image artifacts, CT number linearity and beam hardening. The MVCT images have sufficient contrast that soft tissue regions with 2.8% difference in electron density can be visualized. In MVCT, a linear relationship between CT numbers and electron densities extends to materials with Z ≈ 60. In the 4MV CT imaging there is a position dependence of the CT numbers within a uniform water phantom, which is absent in Co-60 CT images, indicating the presence of beam hardening artifacts in the linac MVCT images. The differences between kVCT and MVCT will be discussed considering the variation of the photon interactions dominating the images. Our investigations indicate that MVCT has properties that may potentially extend its utility beyond radiation therapy.
机译:兆伏计算机断层扫描(MVCT)一直是图像引导放射治疗研究和开发的活跃领域。我们一直在研究MVCT的特定实施方式,并结合使用Cobalt-60放射源进行断层扫描的潜力进行研究。在本文中,我们介绍了将使用Co-60光源和4 MV线性加速器的MVCT与常规kVCT成像进行比较的结果。 Co-60和直线加速器MVCT测量是使用第一代台式CT成像仪获得的;使用飞利浦AcQSim CT模拟器获得KVCT测量值)。使用三种模态对包含各种插入物的幻影进行成像,这些插入物的密度从空气到肺,软组织和骨骼等价物,范围从空气到高原子序数的金属。结果可以表征图像伪影,CT数线性和射束硬化。 MVCT图像具有足够的对比度,可以看到电子密度相差2.8%的软组织区域。在MVCT中,CT数与电子密度之间的线性关系扩展到Z≈60的材料。在4MV CT成像中,均匀的水模中CT数与位置的相关性在Co-60 CT图像中是不存在的,表明在直线加速器MVCT图像中存在束硬化伪影。考虑到控制图像的光子相互作用的变化,将讨论kVCT和MVCT之间的差异。我们的研究表明,MVCT具有的特性可能会将其实用性扩展到放射治疗之外。

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