Cardiac MR PET CT Program, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02144, USA.
Eur J Radiol. 2012 Mar;81(3):e363-9. doi: 10.1016/j.ejrad.2011.11.051. Epub 2011 Dec 23.
To compare image quality of coronary artery plaque visualization at CT angiography with images reconstructed with filtered back projection (FBP), adaptive statistical iterative reconstruction (ASIR), and model based iterative reconstruction (MBIR) techniques.
The coronary arteries of three ex vivo human hearts were imaged by CT and reconstructed with FBP, ASIR and MBIR. Coronary cross-sectional images were co-registered between the different reconstruction techniques and assessed for qualitative and quantitative image quality parameters. Readers were blinded to the reconstruction algorithm.
A total of 375 triplets of coronary cross-sectional images were co-registered. Using MBIR, 26% of the images were rated as having excellent overall image quality, which was significantly better as compared to ASIR and FBP (4% and 13%, respectively, all p<0.001). Qualitative assessment of image noise demonstrated a noise reduction by using ASIR as compared to FBP (p<0.01) and further noise reduction by using MBIR (p<0.001). The contrast-to-noise-ratio (CNR) using MBIR was better as compared to ASIR and FBP (44±19, 29±15, 26±9, respectively; all p<0.001).
Using MBIR improved image quality, reduced image noise and increased CNR as compared to the other available reconstruction techniques. This may further improve the visualization of coronary artery plaque and allow radiation reduction.
比较 CT 血管造影中冠状动脉斑块可视化的图像质量,使用滤波反投影(FBP)、自适应统计迭代重建(ASIR)和基于模型的迭代重建(MBIR)技术进行重建。
对三个离体人心脏的冠状动脉进行 CT 成像,并使用 FBP、ASIR 和 MBIR 进行重建。在不同的重建技术之间对冠状动脉横截面图像进行配准,并评估定性和定量的图像质量参数。读者对重建算法是盲的。
总共配准了 375 对冠状动脉横截面图像。使用 MBIR,有 26%的图像被评为具有极好的整体图像质量,明显优于 ASIR 和 FBP(分别为 4%和 13%,均 p<0.001)。使用 ASIR 与 FBP 相比,图像噪声的定性评估显示出噪声降低(p<0.01),而使用 MBIR 则进一步降低噪声(p<0.001)。与 ASIR 和 FBP 相比,使用 MBIR 的对比噪声比(CNR)更好(分别为 44±19、29±15、26±9,均 p<0.001)。
与其他可用的重建技术相比,使用 MBIR 可提高图像质量、降低图像噪声并增加 CNR。这可能进一步改善冠状动脉斑块的可视化效果并允许减少辐射。