[1] 钱玉娥,胡红杰,张峭巍,等.新双源CT虚拟平扫技术在肝脏检查中的应用.中华放射学杂志,2011,45: 120-123. [2] De Cecco CN, Muscogiuri G, Schoepf UJ, et al. Virtual unenhanced imaging of the liver with third-generation dual-source dual-energy CT and advanced modeled iterative reconstruction. Eur J Radiol, 2016, 85: 1257-1264. [3] 梁艺,邱士军,刘晋新,等.双源CT双能量扫描在肝脏病变中的应用价值.实用放射学杂志,2011,27: 1499-1503. [4] 石洁,王云玲,聂聪科,等.双源CT双能量扫描在肝脏成像中的应用研究.中国医学计算机成像杂志,2014,20: 250-252. [5] 王翔,王涛,王小琴,等.双源CT双能量扫描在肝脏肿瘤应用价值的初步探讨.重庆医学,2013,42: 749-751,754. [6] 袁元,李真林,杨行,等.双源CT低剂量扫描在上腹部增强检查中的应用.中国普外基础与临床杂志,2012,19: 556-561. [7] Matsubara K, Takata T, Kobayashi M, et al. Tube Current Modulation Between Single and Dual Energy CT With a Second-Generation Dual-Source Scanner: Radiation Dose and Image Quality. AJR Am J Roentgenol, 2016, 25:1-8. [8] Gawlitza J, Haubenreisser H, Meyer M, et al. Comparison of organ-specific-radiation dose levels between 70 kVp perfusion CT and standard tri-phasic liver CT in patients with hepatocellular carcinoma using a Monte-Carlo-Simulation-based analysis platform. Eur J Radiol Open, 2016, 3: 95-99. [9] 顾海峰,周长圣,李林,等.炫速双源CT与普通双源CT头部血管双能量成像辐射剂量与图像质量的对比研究.医学研究生学报,2014,27: 502-506. [10] Assimos DG. Re: Characterization of Urinary Stone Composition by Use of Third-Generation Dual-Source Dual-Energy CT with Increased Spectral Separation. J Urol, 2016, 195: 1949-1950. [11] Song I, Yi JG, Park JH, et al. Virtual Non-Contrast CT Using Dual-Energy Spectral CT: Feasibility of Coronary Artery Calcium Scoring. Korean J Radiol,2016, 17: 321-329. [12] Mangold S, De Cecco CN, Wichmann JL, et al. Effect of automated tube voltage selection, integrated circuit detector and advanced iterative reconstruction on radiation dose and image quality of 3rd generation dual-source aortic CT angiography: An intra-individual comparison. Eur J Radiol, 2016, 85: 972-978. [13] 吕仁锋,袁丽萍,李超,等.双源 CT 低管电压结合低浓度对比剂在肝脏增强扫描中的应用.放射学实践,2015,30: 994-996. [14] 姜亮,殷信道,王利伟,等.双源CT2.0和3.2螺距采集模式在主动脉CTA及实质脏器图像质量和辐射剂量中的比较.临床放射学杂志,2014,33: 1925-1930. [15] Beeres M, Bucher AM, Wichmann JL, et al. Improved visual delineation of the intimal flap in Stanford type A and B dissections at 3rd generation dual-source high-pitch CT angiography. Radiol Med, 2016, 121: 573-579. [16] De Cecco CN, Caruso D, Schoepf UJ, et al. Optimization of window settings for virtual monoenergetic imaging in dual-energy CT of the liver: A multi-reader evaluation of standard monoenergetic and advanced imaged-based monoenergetic datasets. Eur J Radiol, 2016, 85: 695-699. |