[1]中国抗癌协会原发性肝癌专业委员会, 中国抗癌协会临床肿瘤学协作专业委员会, 中华医学会肝病学分会原发性肝癌学组. 原发性肝癌局部消融治疗规范的专家共识.中华肝脏病杂志,2011,19(4):257-259. [2]Salami S S. Prostatecancer diagnosis on repeat magnetic resonance imaging-transrectal ultrasound fusion biopsy of benign lesions: recommendations for repeat sampling.J Urol, 2016, 196(1):67-67. [3]Bolten K , Fischer TY, Bender YN, et al. Pilot study of MRI/ultrasound fusion imaging, in postpartum assessment of Cesarean section scar. Ultrasound Obst Gyn,2017, 50(4):520-526. [4]Park S , Jang J , Kim J , et al. Real-timetriple-modal photoacoustic, ultrasound, and magnetic resonance fusion imaging of humans. Ieee T Med Imaging, 2017, 36(9):1912-1921. [5]Hiraoka A , Hirooka M , Koizumi Y , et al. M2066novel technique for determining therapeutic response to radiofrequency ablation therapy for hepatocellular carcinoma using US-volume system.Gastroenterology,2009, 136(5):A-478. [6]中国抗癌协会原发性肝癌专业委员会.原发性肝癌规范化病理诊断指南(2015年版).中华肝胆外科杂志,2015,21(3):865-872. [7]龙颖琳,李凯,郑荣琴,等.超声单模态融合成像技术在肝肿瘤热消融术中即时疗效评估中的初步应用.中华超声影像学杂志,2017,26(4):306-310. [8]Sebek J , Albin N , Bortel R , et al. Sensitivity of microwave ablation models to tissue biophysical properties: A first step toward probabilistic modeling and treatment planning. Med Phys, 2016, 43(5):2649-2661. [9]Zhou Q , Wu S , Gong N , et al. Liposomes loading sodium chloride as effective thermo-seeds for microwave ablation of hepatocellular carcinoma.Nanoscale,2017,9(31):11068-11076. [10]黄仕颖, 梁爽, 魏杨辉,等.CAO方案化疗联合高频聚焦超声消融治疗Ⅲ/Ⅳ期肝母细胞瘤患儿疗效分析.实用肝脏病杂志, 2019,22(4):569-572. [11]Owjimehr M , Danyali H , Helfroush M S , et al. Staging offatty liver diseases based on hierarchical classification and feature fusion for back-scan-converted ultrasound images. Ultrasonic Imaging, 2016, 39(2):79-95. [12]Lee S H , Jin Y J , Lee J W . Survival benefit of radiofrequency ablation for solitary (3–5 cm) hepatocellular carcinoma: An analysis for nationwide cancer registry. Medicine, 2017, 96(44):e8486-e8489. [13]张曼, 李凯, 苏中振,等.融合成像技术辅助普通超声显示困难的肝恶性肿瘤射频消融的应用价值.中华超声影像学杂志, 2016, 25(8):691-695. [14]Morine Y , Enkhbold C , Imura S , et al. Accurate estimation of functional liver volume using Gd-EOB-DTPA MRI compared to MDCT/99mTc-SPECT fusion imaging. AnticancerRes, 2017, 37(10):5693-5700. [15]Afshar-Oromieh A , Vollnberg B , Alberts I , et al. Comparison of PSMA-ligand PET/CT and multiparametric MRI for the detection of recurrent prostate cancer in the pelvis. Eur J Nucl Med Mol I, 2019, 46(11):1-9. [16]Bo X W , Xu H X , Guo L H , et al. Ablative safety margin depicted by fusion imaging with post-treatment contrast-enhanced ultrasound and pretreatment CECT/CEMRI after radiofrequency ablation for liver cancers. Brit J Radiol,2017, 90(1078):63-69. [17]Okabayashi T , Shima Y , Morita S , et al. Liverfunction assessment using technetium-99m-galactosyl single photon emission CT/CT fusion imaging: A prospective trial.J Am Coll Surg, 2017, 225(6):789-795. [18]Schnabel J A, Heinrich M P, Bartłomiej W, et al. Advances and challenges in deformable image registration: from image fusion to complex motion modelling. Med Image Anal,2016, 33(21):145-148. [19]Ahn S J , Lee J M , Lee D H , et al. Real-time US-CT/MRfusion imaging for percutaneous radiofrequency ablation of hepatocellular carcinoma.J Hepatol, 2016, 66(2):347-354. [20]Li M , Ballhausen H , Hegemann N S , et al. Comparison of prostate positioning guided by three-dimensional transperineal ultrasound and cone beam CT. Strahlen Ther Onkol, 2016, 193(3):221-228. [21]Wu T , Cao Y , Ni S , et al. Morphometricanalysis of rat spinal cord angioarchitecture by phase contrast radiography: from 2D to 3D visualization. Spine, 2017, 43(9):504-511. |