首页> 外文会议>2010 IEEE Nuclear Science Symposium : Conference Record >Image quality evaluation using automatic image scanning and a novel nonparametric free-response data analysis method. Application to PET energy based scatter correction evaluation
【24h】

Image quality evaluation using automatic image scanning and a novel nonparametric free-response data analysis method. Application to PET energy based scatter correction evaluation

机译:使用自动图像扫描和新颖的非参数自由响应数据分析方法进行图像质量评估。在基于PET能量的散射校正评估中的应用

获取原文

摘要

We present the application of a task-based image quality evaluation procedure that combines an automatic signal detection technique with a novel nonparametric free-response data analysis method. The procedure delivers an index measuring the detectability of signals at unknown locations, in a manner that requires only a small number of image samples, thus making it convenient for practical applications. We are using the free-response methodology, which allows for multiple marks to be retrieved from an image. An overall signal detectability metric is obtained by using an exponential transformation of the free-response operating characteristic (EFROC) curve. A nonparametric estimator with expressions for its variance calculations are presented. The procedure allows for scaling of the detectability index to any given image size, a property that makes it advantageous for application to phantom experiments in which multiple signals can be inserted, or have relatively large background volumes that can be scanned for false signals. Such experiments can provide substantial signal detectability information with only a few images. We apply this technique to evaluate an energy-based scatter estimation method for PET, which is used in conjunction with an image reconstruction algorithm that incorporates energy-dependent corrections for scatter and random coincidences [Phys. Med. Biol. 51 (2006) 2919–2937]. A comparison of PET time-of-flight (TOF) performance versus no-TOF is also presented.
机译:我们介绍了基于任务的图像质量评估程序的应用,该程序结合了自动信号检测技术和新型的非参数自由响应数据分析方法。该过程以仅需要少量图像样本的方式,提供了一种指标,用于测量未知位置信号的可检测性,从而使其在实际应用中非常方便。我们正在使用自由响应方法,该方法允许从图像中检索多个标记。通过使用自由响应操作特性(EFROC)曲线的指数变换来获得总体信号可检测性度量。提出了一种非参数估计器,该估计器具有用于其方差计算的表达式。该程序允许将可检测性指标缩放到任何给定的图像大小,该特性使其有利于应用于幻像实验,在幻像实验中可以插入多个信号,或者具有可以扫描虚假信号的较大背景体积。这样的实验仅用几个图像就可以提供大量的信号可检测性信息。我们应用这项技术来评估基于能量的PET散射估计方法,该方法与结合了与能量相关的散射和随机符合校正的图像重建算法结合使用。中生物学51(2006)2919–2937]。还介绍了PET飞行时间(TOF)性能与非飞行时间的比较。

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