首页> 外文会议>Conference on physics of medical imaging >Low-contrast Visualization in Megavoltage Cone-beam CT at one Beam Pulse per Projection using Thick, Segmented Scintillators
【24h】

Low-contrast Visualization in Megavoltage Cone-beam CT at one Beam Pulse per Projection using Thick, Segmented Scintillators

机译:使用厚的分段闪烁体在每个投影一个光束脉冲的情况下在兆电压锥束CT中实现低对比度可视化

获取原文

摘要

Megavoltage cone-beam computed tomography (MV CBCT) using an electronic portal imaging device (EPID) is a highly promising technique for providing valuable volumetric information for image guidance in radiotherapy. However, active matrix flat-panel imagers (AMFPIs), which are the established gold standard in portal imaging, require a relatively large dose to create images that are clinically useful. This is a consequence of the inefficiency of the phosphor screens employed in conventional MV AMFPIs, which utilize only ~2% of the incident radiation at 6 MV. Fortunately, the incorporation of thick, segmented scintillators can significantly improve the performance of MV AMFPIs, leading to improved image quality for projection imaging at extremely low dose. It is therefore of interest to explore the performance of such thick scintillators for MV CBCT toward the goal of soft-tissue contrast visualization. In this study, prototype AMFPIs incorporating segmented scintillators based on CsI:Tl and BGO crystals with thicknesses ranging from ~11 to 25 mm have been constructed and evaluated. Each prototype incorporates a detector consisting of a matrix of 120 × 60 scintillator elements separated by reflective septal walls, with an element-to-element pitch of 1.016 mm,coupled to an overlying ~1 mm thick Cu plate. The prototype AMFPIs were incorporated into a bench-top CBCT system, allowing the acquisition of tomographic images of a contrast phantom using a 6 MV radiotherapy photon beam. The phantom consists of a water-equivalent (solid water) cylinder, embedded with tissue-equivalent inserts having electron densities, relative to water, varying from ~0.43 to ~1.47. Reconstructed images of the phantom were obtained down to the lowest available dose (one beam pulse per projection), corresponding to a total scan dose of ~4 cGy using 180 projections. In this article, reconstructed images, contrast, noise and contrast-to-noise ratio for the tissue-equivalent objects using the various prototype AMFPIs are examined as a function of dose and compared to those of a conventional MV AMFPI.
机译:使用电子门户成像装置(EPID)的MegVoLTAGE锥形束计算机断层扫描(MV CBCT)是一种高度有希望的技术,用于提供放疗中的图像引导的有价值的体积信息。然而,有源矩阵平板图像(AMFPI)是门网成像中已建立的金标准,需要相对大的剂量来创建临床上有用的图像。这是常规MV AMFPI中使用的磷光体筛网的低效率的结果,其仅在6mV下仅使用〜2%的入射辐射。幸运的是,厚的分段闪烁体的掺入可以显着提高MV AMFPI的性能,从而改善了极低剂量下投影成像的图像质量。因此,探讨这种厚闪烁体的性能对于MV CBCT对软组织对比度可视化的目的的感兴趣。在本研究中,已经构建并评估了基于CSI的CSI:T1和BGO晶体的分段闪烁体的原型AMFPI已经构建并评估了厚度为约11至25mm。每个原型包括由反射隔膜壁分开的120×60闪烁体元件的矩阵组成的检测器,其中元件到元件间距为1.016mm, 耦合到覆盖〜1mm厚的Cu板。将原型AMFPI掺入台式CBCT系统中,允许使用6mV放射疗法光子束获取对比体映射的断层图像。幻影由水当量(固体水)圆筒组成,嵌入具有相对于水的电子密度的组织当量插入物,从〜0.43到1.47不同。将幻像的重建图像下降到最低可用剂量(每突出的一个光束脉冲),对应于使用180突起的总扫描剂量为约4个CGY。在本文中,使用各种原型AMFPI的组织当量对象的重建图像,对比度,噪声和对比度,以作为剂量的函数,并与传统的MV AMFPI的函数进行比较。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号