...
首页> 外文期刊>Academic radiology >Physical evaluation of the weighted Feldkamp algorithms applied to the 256-detector row CT scanner for volumetric cine imaging.
【24h】

Physical evaluation of the weighted Feldkamp algorithms applied to the 256-detector row CT scanner for volumetric cine imaging.

机译:加权Feldkamp算法的物理评估,该算法应用于256探测器行CT扫描仪进行体积电影成像。

获取原文
获取原文并翻译 | 示例
           

摘要

RATIONALE AND OBJECTIVES: To improve effective scan time and image quality in cone-beam computed tomography (CT), Parker's weighting function (half scan [HS]-Feldkamp-Davis-Kress [FDK]) extended to a larger range up to 2pi was proposed as new half-scan algorithm (NHS-FDK). We conducted a practical physical evaluation of NHS-FDK and HS-FDK using 256-detector row CT. MATERIALS AND METHODS: Three types of weighting function (full-scan [FS-FDK], HS-FDK, and NHS-FDK) were evaluated by using 256-detector row CT for five variables, ie, point spread function, image noise, CT number uniformity, Feldkamp artifact, temporal resolution, and clinical evaluation. RESULTS: Image noise, Feldkamp artifact, and temporal resolution were dependent on weighting function. Image noise magnitude was independent of projection angle for all regions of interest with FS-FDK, but showed a symmetric pattern with projection angle with HS-FDK and NHS-FDK. With regard to temporal resolution, NHS-FDK did not remove the motion artifact in the heart except in such slower motion organs as the pulmonary vessels, whereas HS-FDK reduced the motion artifact in the heart. HS-FDK had an even more incomplete data region in the Radon space than FS-FDK, suggesting that it would provide poor image quality distant to the midplane in the longitudinal direction. In practical testing in human subjects, HS-FDK showed inferior performance in all variables except temporal resolution. CONCLUSION: Despite its inferiority to FS-FDK for static objects, HS-FDK may be useful in chest imaging. Contrary to previous findings using static images, NHS-FDK failed to show advantages over HS-FDK or FS-FDK in a moving phantom and human subjects.
机译:理由和目的:为了改善锥束计算机断层扫描(CT)的有效扫描时间和图像质量,Parker的加权功能(半扫描[HS] -Feldkamp-Davis-Kress [FDK])扩展到了最大2pi的范围。提出作为新的半扫描算法(NHS-FDK)。我们使用256个探测器行CT对NHS-FDK和HS-FDK进行了实际的物理评估。材料与方法:通过使用256个探测器行CT评估了五个变量,即点扩散函数,图像噪声,三阶加权函数(全扫描[FS-FDK],HS-FDK和NHS-FDK)。 CT数量均匀性,Feldkamp伪像,时间分辨率和临床评估。结果:图像噪声,Feldkamp伪像和时间分辨率取决于加权函数。对于FS-FDK,图像噪声幅度与所有感兴趣区域的投影角均无关,但对于HS-FDK和NHS-FDK,图像噪声大小呈投影角对称。关于时间分辨率,NHS-FDK并未除去心脏中的运动伪影,只有诸如肺血管这样的较慢运动的器官除外,而HS-FDK却减少了心脏中的运动伪影。 HS-FDK在Radon空间中的数据区域甚至比FS-FDK更不完整,这表明在纵向上远离中平面的情况下,其图像质量较差。在人类受试者的实际测试中,HS-FDK在除时间分辨率以外的所有变量中均表现较差。结论:尽管HS-FDK在静态物体方面不如FS-FDK,但在胸部成像中可能还是有用的。与以前使用静态图像的发现相反,NHS-FDK在移动的幻像和人体对象中未能显示出优于HS-FDK或FS-FDK的优势。

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