首页> 外文期刊>Physics in medicine and biology. >Comparison of conventional, model-based quantitative planar, and quantitative SPECT image processing methods for organ activity estimation using In-111 agents
【24h】

Comparison of conventional, model-based quantitative planar, and quantitative SPECT image processing methods for organ activity estimation using In-111 agents

机译:使用In-111试剂估算器官活动的常规,基于模型的定量平面和定量SPECT图像处理方法的比较

获取原文
获取原文并翻译 | 示例
           

摘要

Accurate quantification of organ radionuclide uptake is important for patient-specific dosimetry. The quantitative accuracy from conventional conjugate view methods is limited by overlap of projections from different organs and background activity, and attenuation and scatter. In this work, we propose and validate a quantitative planar (QPlanar) processing method based on maximum likelihood (ML) estimation of organ activities using 3D organ VOIs and a projector that models the image degrading effects. Both a physical phantom experiment and Monte Carlo simulation (MCS) studies were used to evaluate the new method. In these studies, the accuracies and precisions of organ activity estimates for the QPlanar method were compared with those from conventional planar (CPlanar) processing methods with various corrections for scatter, attenuation and organ overlap, and a quantitative SPECT (QSPECT) processing method. Experimental planar and SPECT projections and registered CT data from an RSD Torso phantom were obtained using a GE Millenium VH/Hawkeye system. The MCS data were obtained from the 3D NCAT phantom with organ activity distributions that modelled the uptake of In-111 ibritumomab tiuxetan. The simulations were performed using parameters appropriate for the same system used in the RSD torso phantom experiment. The organ activity estimates obtained from the CPlanar, QPlanar and QSPECT methods from both experiments were compared. From the results of the MCS experiment, even with ideal organ overlap correction and background subtraction, CPlanar methods provided limited quantitative accuracy. The QPlanar method with accurate modelling of the physical factors increased the quantitative accuracy at the cost of requiring estimates of the organ VOIs in 3D. The accuracy of QPlanar approached that of QSPECT, but required much less acquisition and computation time. Similar results were obtained from the physical phantom experiment. We conclude that the QPlanar method, based on 3D organ VOIs and accurate models of the projection process, provided a substantial increase in accuracy of organ activity estimates from planar images compared to CPlanar processing and had accuracy approaching that of QSPECT.
机译:器官放射性核素摄取的准确定量对于特定于患者的剂量测定很重要。传统共轭视图方法的定量准确性受到来自不同器官和背景活动的投影重叠以及衰减和散射的限制。在这项工作中,我们基于3D器官VOI和模拟图像退化效果的投影仪,基于器官活动的最大似然(ML)估计,提出并验证了一种定量平面(QPlanar)处理方法。物理体模实验和蒙特卡洛模拟(MCS)研究均用于评估新方法。在这些研究中,将QPlanar方法的器官活动估计的准确性和精确度与传统的平面(CPlanar)处理方法进行了比较,并对散射,衰减和器官重叠以及定量SPECT(QSPECT)处理方法进行了各种校正。使用GE Millenium VH / Hawkeye系统获得了RSD躯干体模的实验平面和SPECT投影以及配准的CT数据。 MCS数据是从3D NCAT幻影获得的,该幻影的器官活动分布模拟了In-111 ibritumomab tiuxetan的摄取。使用适合于RSD躯干体模实验中使用的相同系统的参数执行模拟。比较了从两个实验的CPlanar,QPlanar和QSPECT方法获得的器官活性估计值。从MCS实验的结果来看,即使采用理想的器官重叠校正和背景扣除,CPlanar方法也提供了有限的定量准确性。对物理因素进行精确建模的QPlanar方法以要求估算3D器官VOI的代价提高了定量准确性。 QPlanar的精度接近QSPECT,但所需的采集和计算时间却少得多。从物理体模实验获得了相似的结果。我们得出结论,与CPlanar处理相比,基于3D器官VOI和投影过程的精确模型的QPlanar方法大大提高了根据平面图像估计器官活动的准确性,并且其准确性接近QSPECT。

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