Park Juil, Choi Young Hun, Cheon Jung-Eun, Kim Woo Sun, Kim In-One, Pak Seong Yong, Krauss Bernhard
Department of Radiology, Seoul National University Children's Hospital, 101 Daehak-ro, Jongno-gu, Seoul, 0380, South Korea.
Department of Radiology, Seoul National University College of Medicine, Seoul, South Korea.
Pediatr Radiol. 2017 Nov;47(12):1648-1658. doi: 10.1007/s00247-017-3908-8. Epub 2017 Jun 27.
Advanced virtual monochromatic reconstruction from dual-energy brain CT has not been evaluated in children.
To determine the most effective advanced virtual monochromatic imaging energy level for maximizing pediatric brain parenchymal image quality in dual-energy unenhanced brain CT and to compare this technique with conventional monochromatic reconstruction and polychromatic scanning.
Using both conventional (Mono) and advanced monochromatic reconstruction (Mono+) techniques, we retrospectively reconstructed 13 virtual monochromatic imaging energy levels from 40 keV to 100 keV in 5-keV increments from dual-source, dual-energy unenhanced brain CT scans obtained in 23 children. We analyzed gray and white matter noise ratios, signal-to-noise ratios and contrast-to-noise ratio, and posterior fossa artifact. We chose the optimal mono-energetic levels and compared them with conventional CT.
For Mono+maximum optima were observed at 60 keV, and minimum posterior fossa artifact at 70 keV. For Mono, optima were at 65-70 keV, with minimum posterior fossa artifact at 75 keV. Mono+ was superior to Mono and to polychromatic CT for image-quality measures. Subjective analysis rated Mono+superior to other image sets.
Optimal virtual monochromatic imaging using Mono+ algorithm demonstrated better image quality for gray-white matter differentiation and reduction of the artifact in the posterior fossa.
双能量脑CT的高级虚拟单色重建在儿童中尚未得到评估。
确定在双能量非增强脑CT中使儿科脑实质图像质量最大化的最有效的高级虚拟单色成像能量水平,并将该技术与传统单色重建和多色扫描进行比较。
我们使用传统(Mono)和高级单色重建(Mono+)技术,对23名儿童的双源双能量非增强脑CT扫描以5keV增量从40keV到100keV回顾性重建了13个虚拟单色成像能量水平。我们分析了灰质和白质的噪声比、信噪比和对比噪声比以及后颅窝伪影。我们选择了最佳单能量水平并将其与传统CT进行比较。
对于Mono+,在60keV观察到最大值,在70keV观察到最小后颅窝伪影。对于Mono,最佳值在65 - 70keV,在75keV观察到最小后颅窝伪影。在图像质量测量方面,Mono+优于Mono和多色CT。主观分析将Mono+评为优于其他图像集。
使用Mono+算法的最佳虚拟单色成像在灰质 - 白质区分和减少后颅窝伪影方面显示出更好的图像质量。