School of Integrated Technology, Yonsei University, 406-840 Incheon, Korea.
Phys Med Biol. 2013 Mar 7;58(5):1433-46. doi: 10.1088/0031-9155/58/5/1433. Epub 2013 Feb 11.
We examine the noise advantages of having a computed tomography (CT) detector whose spatial resolution is significantly better (e.g. a factor of 2) than needed for a desired resolution in the reconstructed images. The effective resolution of detectors in x-ray CT is sometimes degraded by binning cells because the small cell size and fine sampling are not needed to achieve the desired resolution (e.g. with flat panel detectors). We studied the effect of the binning process on the noise in the reconstructed images and found that while the images in the absence of noise can be made identical for the native and the binned system, for the same system MTF in the presence of noise, the binned system always results in noisier reconstructed images. The effect of the increased noise in the reconstructed images on lesion detection is scale (frequency content) dependent with a larger difference between the high resolution and binned systems for imaging fine structure (small objects). We show simulated images reconstructed with both systems for representative objects and quantify the impact of the noise on the detection of the lesions based on mathematical observers. Through both subjective assessment of the reconstructed images and the quantification using mathematical observers, we show that for a CT system where the photon noise is dominant, higher resolution in the detectors leads to better noise performance in the reconstructed images at any resolution.
我们研究了具有比重建图像所需的分辨率高得多(例如 2 倍)的空间分辨率的计算机断层扫描(CT)探测器的噪声优势。由于不需要小单元尺寸和精细采样来实现所需的分辨率(例如使用平板探测器),因此 X 射线 CT 探测器的有效分辨率有时会因 binning 而降低。我们研究了 binning 过程对重建图像噪声的影响,发现虽然在不存在噪声的情况下,可以使原始和 binning 系统的图像相同,但对于具有噪声的相同系统 MTF,binning 系统总是导致重建图像噪声更大。在重建图像中增加噪声对病变检测的影响与尺度(频率内容)有关,对于成像精细结构(小物体),高分辨率和 binning 系统之间的差异更大。我们为代表对象重建了这两个系统的模拟图像,并基于数学观察者量化了噪声对病变检测的影响。通过对重建图像的主观评估和使用数学观察者的量化,我们表明对于光子噪声占主导地位的 CT 系统,探测器的更高分辨率可在任何分辨率下提高重建图像的噪声性能。