[1]黄笳, 刘笑雷, 谭海东, 等. 健康查体人群中肝血管瘤的流行病学及临床特点分析. 中华医学杂志, 2018, 98(36):2925-2928. [2]Bara TJ,Gurzu S,Jung I,et al. Giant cavernous hepatic hemangioma diagnosed incidentally in a perimenopausal obese female with endometrial adenocarcinoma: a case report. Anticancer Res, 2016, 36(2):769-772. [3]潘冰, 吕少诚, 李立新,等. 肝血管瘤自发破裂二例并文献复习. 中华肝胆外科杂志, 2018, 24(6):422-423. [4]Bhardwaj H, Stephens M, Bhatt M, et al.Prostate-specific membrane antigen PET/CT findings for hepatic hemangioma. Clin Nucl Med, 2016, 41(12):968-969. [5]Gnarra M, Behr G, Kitajewski A, et al. History of the infantile hepatic hemangioma: from imaging to generating a differential diagnosis. World J Clin Pediatr, 2016, 5(3):273-280. [6]贾广生, 李金平, 户宏艳, 等. 自适应性统计迭代重建技术结合低管电压在肝脏三期增强低剂量扫描中的应用. 中华医学杂志, 2019, 99(3):198-203. [7]毛光品, 黄求理, 潘宇宁, 等. 自动管电流调节技术结合迭代重建算法在下肢动脉CT血管成像中的应用. 中华放射医学与防护杂志, 2016, 36(3):230-234. [8]Kalra MK, Prasad S, Saini S, et al. Clinical comparison of standard-dose and 50% reduced-dose abdominal CT: effect on image quality. Am J Roentgenol, 2002, 179(5):1101-1106. [9]Dong WF, Qiu B, Xu HF, et al. Invasive management of symptomatic hepatic hemangioma. Eur J Gastroenterol Hepatol, 2019, 31(9):1079-1084. [10] Iacobas I, Phung TL, Adams DM, et al. Guidance document for hepatic hemangioma (infantile and congenital) evaluation and monitoring. J Pediatr, 2018, 203(1):294-300. [11] Liu X, Yang Z, Tan H, et al.Fever of unknown origin caused by giant hepatic hemangioma. J Gastrointest Surg, 2018, 22(2):366-367. [12] 李梦迪, 陈勇, 高知玲, 等. 多层螺旋CT全肝灌注成像对肝脏常见肿瘤血流状态的评价. 中华肿瘤杂志, 2015, 37(12):904-908. [13] Lewis S, Aljarallah B, Trivedi A, et al. Magnetic resonance imaging of a small vessel hepatic hemangioma in a cirrhotic patient with histopathologic correlation. Clin Imaging, 2015, 39(4):702-706. [14] Kaufmann D, Lauscher JC, Gröne J, et al. CT-based measurement of the inner pelvic volume. Acta Radiol, 2017, 58(2):218-223. [15] Jia YJ, Ji X, He TP, et al. Quantitative analysis of airway tree in low-dose chest CT with a new model-based iterative reconstruction algorithm: comparison to adaptive statistical iterative reconstruction in routine-dose CT. Acad Radiol, 2018, 25(12):1526-1532. [16] Tang YC, Liu YC, Hsu MY, et al. Adaptive iterative dose reduction 3D integrated with automatic tube current modulation for CT coronary artery calcium quantification: comparison to traditional filtered back projection in an anthropomorphic phantom and patients. Acad Radiol, 2018, 25(8):1010-1017. [17] Chen CM , Lin YY , Hsu MY , et al. Performance of adaptive iterative dose reduction 3D integrated with automatic tube current modulation in radiation dose and image noise reduction compared with filtered-back projection for 80-kVp abdominal CT: anthropomorphic phantom and patient study. Eur J Radiol, 2016, 85(9):1666-1672. [18] Zhao YX , Zuo ZW , Suo HN ,et al. CT pulmonary angiography using automatic tube current modulation combination with different noise index with iterative reconstruction algorithm in different body mass index: image quality and radiation dose. Acad Radiol, 2016, 23(12):1513-1520. [19] Wu QY, Wang Y, Kai HH, et al. Application of 80-kVp tube voltage, low-concentration contrast agent and iterative reconstruction in coronary CT angiography: evaluation of image quality and radiation dose. Int J Clin Pract, 2016, 70(9):50-55. [20] Deák Z, Maertz F, Meurer F , et al. Submillisievert computed tomography of the chest using model-based iterative algorithm: optimization of tube voltage with regard to patient size. J Comput Assist Tomogr, 2017, 41(2):254-262. |