首页> 外文会议>Conference on Medical Imaging 2008: Imaging Processing; 20080217-19; San Diego,CA(US) >Automated motion correction based on target tracking for dynamic nuclear medicine studies
【24h】

Automated motion correction based on target tracking for dynamic nuclear medicine studies

机译:基于目标跟踪的自动运动校正,用于动态核医学研究

获取原文
获取原文并翻译 | 示例

摘要

Nuclear medicine dynamic studies of kidneys, bladder and stomach are important diagnostic tools. Accurate generation of time-activity curves from regions of interest (ROIs) requires that the patient remains motionless for the duration of the study. This is not always possible since some dynamic studies may last from several minutes to one hour. Several motion correction solutions have been explored. Motion correction using external point sources is inconvenient and not accurate especially when motion results from breathing, organ motion or feeding rather than from body motion alone. Centroid-based motion correction assumes that activity distribution is only inside the single organ (without background) and uniform, but this approach is impractical in most clinical studies. In this paper, we present a novel technique of motion correction that first tracks the organ of interest in a dynamic series then aligns the organ. The implementation algorithm for target tracking-based motion correction consists of image preprocessing, target detection, target positioning, motion estimation and prediction, tracking (new search region generation) and target alignment. The targeted organ is tracked from the first frame to the last one in the dynamic series to generate a moving trajectory of the organ. Motion correction is implemented by aligning the organ ROIs in the image series to the location of the organ in the first image. The proposed method of motion correction has been applied to several dynamic nuclear medicine studies including radionuclide cystography, dynamic renal scintigraphy, diuretic renography and gastric emptying scintigraphy.
机译:肾脏,膀胱和胃的核医学动态研究是重要的诊断工具。要从感兴趣区域(ROI)准确生成时间活动曲线,需要患者在研究期间保持静止。由于某些动态研究可能会持续几分钟到一小时,因此这并不总是可能的。已经探索了几种运动校正解决方案。使用外部点源进行运动校正不方便且不准确,尤其是当运动是由于呼吸,器官运动或进食而不是仅由身体运动引起的。基于质心的运动校正假设活动分布仅在单个器官内(无背景)且均匀,但是这种方法在大多数临床研究中不切实际。在本文中,我们提出了一种运动校正的新技术,该技术首先以动态序列跟踪感兴趣的器官,然后对齐该器官。基于目标跟踪的运动校正的实现算法包括图像预处理,目标检测,目标定位,运动估计和预测,跟踪(新的搜索区域生成)和目标对齐。在动态序列中从第一帧到最后一帧跟踪目标器官,以生成器官的运动轨迹。通过将图像系列中的器官ROI与第一图像中器官的位置对齐来实现运动校正。所提出的运动校正方法已被应用于一些动态核医学研究,包括放射性核素膀胱造影,动态肾脏闪烁显像,利尿肾病造影和胃排空闪烁显像。

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