首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Proceedings >Achieving high-resolution, soft-tissue imaging with cone-beam CT: A two-pronged approach for modulation of x-ray fluence and detector gain
【24h】

Achieving high-resolution, soft-tissue imaging with cone-beam CT: A two-pronged approach for modulation of x-ray fluence and detector gain

机译:实现高分辨率,软组织成像与锥形梁CT:一种用于调制X射线流量和探测器增益的双管齐下的方法

获取原文

摘要

Cone-beam computed tomography (CBCT) presents a highly promising and challenging advanced application of flatpanel detectors (FPDs). The great advantage of this adaptable technology is in the potential for sub-mm 3D spatial resolution in combination with soft-tissue detectability. While the former is achieved naturally by CBCT systems incorporating modern FPD designs (e.g., 200 – 400 um pixel pitch), the latter presents a significant challenge due to limitations in FPD dynamic range, large field of view, and elevated levels of x-ray scatter in typical CBCT configurations. We are investigating a two-pronged strategy to maximizing soft-tissue detectability in CBCT: 1.) frontend solutions, including novel beam modulation designs (viz., spatially varying compensators) that alleviate detector dynamic range requirements, reduce x-ray scatter, and better distribute imaging dose in a manner suited to soft-tissue visualization throughout the field of view; and 2.) back-end solutions, including implementation of an advanced FPD design (Varian PaxScan 4030CB) that features dual-gain and dynamic gain switching that effectively extends detector dynamic range to 18 bits. These strategies are explored quantitatively on CBCT imaging platforms developed in our laboratory, including a dedicated CBCT bench and a mobile isocentric C-arm (Siemens PowerMobil). Pre-clinical evaluation of improved soft-tissue visibility was carried out in phantom and patient imaging with the C-arm device. Incorporation of these strategies begin to reveal the full potential of CBCT for soft-tissue visualization, an essential step in realizing broad utility of this adaptable technology for diagnostic and image-guided procedures.
机译:锥梁计算断层扫描(CBCT)呈现出高度有前途和挑战的平板探测器(FPD)的高级应用。这种适应性技术的巨大优点是亚mm 3D空间分辨率与软组织可检测性结合。虽然前者通过包括现代FPD设计的CBCT系统自然实现(例如,200 - 400μm像素间距),但由于FPD动态范围,大视野和X射线的高度升高,后者由于限制而提出了重大挑战分散在典型的CBCT配置中。我们正在调查双管策略,以最大化CBCT中的软组织可检测性:1。)前端解决方案,包括用于减轻探测器动态范围要求,减少X射线散射的新型光束调制设计(viz,空间不同的补偿器)在整个视野中,以适合软组织可视化的方式更好地分配成像剂量; 2.)后端解决方案,包括实施先进的FPD设计(Varian Paxscan 4030CB),其具有双增益和动态增益切换,有效地将检测器动态范围扩展为18位。这些策略在我们实验室开发的CBCT成像平台上定量探讨,包括专用CBCT板凳和移动Isocentric C-ARM(Siemens Powermobil)。改善软组织可见度的预临床前评估在与C臂装置的幻影和患者成像中进行。纳入这些策略开始揭示CBCT对软组织可视化的全部潜力,这是实现这种适应性技术的广泛效用的基本步骤,以实现诊断和图像引导程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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