...
首页> 外文期刊>Medical Physics >Investigation of energy weighting using an energy discriminating photon counting detector for breast CT
【24h】

Investigation of energy weighting using an energy discriminating photon counting detector for breast CT

机译:使用能量分辨光子计数探测器进行乳腺CT能量加权研究

获取原文
获取原文并翻译 | 示例

摘要

Purpose: Breast CT is an emerging imaging technique that can portray the breast in 3D and improve visualization of important diagnostic features. Early clinical studies have suggested that breast CT has sufficient spatial and contrast resolution for accurate detection of masses and microcalcifications in the breast, reducing structural overlap that is often a limiting factor in reading mammographic images. For a number of reasons, image quality in breast CT may be improved by use of an energy resolving photon counting detector. In this study, the authors investigate the improvements in image quality obtained when using energy weighting with an energy resolving photon counting detector as compared to that with a conventional energy integrating detector. Methods: Using computer simulation, realistic CT images of multiple breast phantoms were generated. The simulation modeled a prototype breast CT system using an amorphous silicon (a-Si), CsI based energy integrating detector with different x-ray spectra, and a hypothetical, ideal CZT based photon counting detector with capability of energy discrimination. Three biological signals of interest were modeled as spherical lesions and inserted into breast phantoms; hydroxyapatite (HA) to represent microcalcification, infiltrating ductal carcinoma (IDC), and iodine enhanced infiltrating ductal carcinoma (IIDC). Signal-to-noise ratio (SNR) of these three lesions was measured from the CT reconstructions. In addition, a psychophysical study was conducted to evaluate observer performance in detecting microcalcifications embedded into a realistic anthropomorphic breast phantom. Results: In the energy range tested, improvements in SNR with a photon counting detector using energy weighting was higher (than the energy integrating detector method) by 30%-63% and 4%-34%, for HA and IDC lesions and 12%-30% (with Al filtration) and 32%-38% (with Ce filtration) for the IIDC lesion, respectively. The average area under the receiver operating characteristic curve (AUC) for detection of microcalcifications was higher by greater than 19% (for the different energy weighting methods tested) as compared to the AUC obtained with an energy integrating detector. Conclusions: This study showed that breast CT with a CZT photon counting detector using energy weighting can provide improvements in pixel SNR, and detectability of microcalcifications as compared to that with a conventional energy integrating detector. Since a number of degrading physical factors were not modeled into the photon counting detector, this improvement should be considered as an upper bound on achievable performance.
机译:目的:乳房CT是一种新兴的成像技术,可以3D方式描绘乳房并改善重要诊断特征的可视化。早期的临床研究表明,乳腺CT具有足够的空间和对比度分辨率,可准确检测乳腺的肿块和微钙化,减少结构重叠(通常是读取乳腺X线照片的限制因素)。由于多种原因,可以通过使用能量分辨光子计数检测器来提高乳房CT的图像质量。在这项研究中,作者研究了使用能量分辨光子计数检测器进行能量加权时与使用常规能量积分检测器相比所获得的图像质量的改善。方法:使用计算机模拟,生成多个乳房幻影的真实CT图像。该模拟使用无定形硅(a-Si),基于CsI的具有不同X射线光谱的能量积分检测器以及假设的,理想的基于CZT的具有能量辨别能力的光子计数检测器对原型乳腺CT系统建模。将三种感兴趣的生物信号建模为球形病变,并插入到乳房幻像中。羟基磷灰石(HA)代表微钙化,浸润性导管癌(IDC)和碘增强的浸润性导管癌(IIDC)。从CT重建中测量了这三个病变的信噪比(SNR)。此外,进行了一项心理物理研究,以评估观察者检测嵌入真实拟人化乳房幻像中的微钙化的性能。结果:在测试的能量范围内,对于HA和IDC病变和12%,使用能量加权的光子计数检测器(比能量积分检测器方法)的SNR改善高30%-63%和4%-34% IIDC病变分别为-30%(使用Al过滤)和32%-38%(使用Ce过滤)。与使用能量积分检测器获得的AUC相比,用于微钙化检测的接收器工作特性曲线(AUC)下的平均面积高出19%以上(对于所测试的不同能量加权方法)。结论:这项研究表明,与常规能量积分检测器相比,带有能量加权的CZT光子计数检测器的乳腺CT可以改善像素SNR和微钙化的可检测性。由于未将许多退化的物理因素建模到光子计数检测器中,因此应将此改进视为可实现性能的上限。

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