Boedeker K L, Cooper V N, McNitt-Gray M F
University of California, Los Angeles, USA.
Phys Med Biol. 2007 Jul 21;52(14):4027-46. doi: 10.1088/0031-9155/52/14/002. Epub 2007 Jun 8.
Dose reduction efforts in diagnostic CT have brought the tradeoff of dose versus image quality to the forefront. The need for meaningful characterization of image noise beyond that offered by pixel standard deviation is becoming increasingly important. This work aims to study the implementation of the noise power spectrum (NPS) and noise equivalent quanta (NEQ) on modern, multislice diagnostic CT scanners. The details of NPS and NEQ measurement are outlined and special attention is paid to issues unique to multislice CT. Aliasing, filter design and effects of acquisition geometry are investigated. While it was found that both metrics can be implemented in modern CT, it was discovered that NEQ cannot be aptly applied with certain non-traditional reconstruction filters or in helical mode. NPS and NEQ under a variety of conditions are examined. Extensions of NPS and NEQ to uses in protocol standardization are also discussed.
诊断性CT中的剂量降低措施已将剂量与图像质量之间的权衡推到了前沿。除像素标准差所提供的信息外,对图像噪声进行有意义表征的需求变得越来越重要。这项工作旨在研究噪声功率谱(NPS)和噪声等效量子(NEQ)在现代多层诊断CT扫描仪上的应用。概述了NPS和NEQ测量的细节,并特别关注多层CT特有的问题。研究了混叠、滤波器设计和采集几何结构的影响。虽然发现这两种指标都可以在现代CT中实现,但发现NEQ不能适用于某些非传统重建滤波器或螺旋模式。研究了各种条件下的NPS和NEQ。还讨论了NPS和NEQ在协议标准化中的扩展应用。