首页> 外文会议>SPIE Conference on Physics of Medical Imaging >X-ray dose reduction by adaptive source equalization andelectronic region-of-interest control
【24h】

X-ray dose reduction by adaptive source equalization andelectronic region-of-interest control

机译:通过自适应源均衡和电感区域的感兴趣区域减少X射线剂量降低

获取原文

摘要

Radiation dose is particularly a concern in pediatric cardiac fluoroscopy procedures, which account for 7% of all cardiac procedures performed. The Scanning-Beam Digital X-ray (SBDX) fluoroscopy system has already demonstrated reduced dose in adult patients owing to its high-DQE photon-counting detector, reduced detected scatter, and the elimination of the anti-scatter grid. Here we show that the unique flexible illumination platform of the SBDX system will enable further dose area product reduction, which we are currently developing for pediatric patients, but which will ultimately benefit all patients. The SBDX system has a small-area detector array and a large-area X-ray source with up to 9,000 individually-controlled X-ray focal spots. Each focal spot illuminates a small fraction of the full field of view. To acquire a frame, each focal spot is activated for a fixed number of 1-microsecond periods. Dose reduction is made possible by reducing the number of activations of some of the X-ray focal spots during each frame time. This can be done dynamically to reduce the exposure in areas of low patient attenuation, such as the lung field. This spatially-adaptive illumination also reduces the dynamic range in the full image, which is visually pleasing. Dose can also be reduced by the user selecting a region of interest (ROI) where full image quality is to be maintained. Outside the ROI, the number of activations of each X-ray focal spot is reduced and the image gain is correspondingly increased to maintain consistent image brightness. Dose reduction is dependent on the size of the ROI and the desired image quality outside the ROI. We have developed simulation software that is based on real data and can simulate the performance of the equalization and ROI filtration. This software represents a first step toward real-time implementation of these dose-reduction methods. Our simulations have shown that dose area product reductions of 40% arc possible using equalization, and dose savings as high as 74% are possible with the ROI approach. The dose reduction achieved in clinical use will depend on patient anatomy.
机译:辐射剂量特别是对儿科心脏透视程序的担忧,其占所有心脏手术的7%。由于其高DQE光子计数探测器,检测到的散射减少,并且消除防散网,扫描束数字X射线(SBDX)荧光透视系统已经证明了成年患者的剂量减少,并消除了防散网。在这里,我们表明,SBDX系统的独特灵活照明平台将实现进一步的剂量区域产品,我们目前正在为儿科患者发展,但最终会使所有患者有益。 SBDX系统具有小区探测器阵列和大面积X射线源,最多可单独控制的X射线焦点。每个焦点都会照亮一小部分完整视野。要获取帧,每个焦点被激活以用于固定数量的1微秒。通过减少每个帧时间期间一些X射线焦点的激活次数来实现剂量降低。这可以动态地完成,以减少低患者衰减区域的曝光,例如肺田。这种空间自适应照明还减少了在视觉上令人愉悦的完整图像中的动态范围。用户也可以通过用户选择要保持完整图像质量的感兴趣区域(ROI)来减少剂量。在ROI之外,减小了每个X射线焦点的激活次数,并且相应地增加了图像增益以维持一致的图像亮度。剂量还原取决于投资回报率的大小和ROI外部的所需图像质量。我们开发了基于实际数据的仿真软件,可以模拟均衡和ROI过滤的性能。该软件代表了朝着这些剂量减少方法实时实现的第一步。我们的仿真表明,使用均衡的剂量区域产品减少40%的弧形,并且通过ROI方法可以节省高达74%的剂量。临床用途达到的剂量降低将取决于患者解剖学。

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