Park K. Extravascular transport of nanoparticles in solid tumors[J]. J Control Release, 2012, 161(3): 967. [2]Gan H K, Burgess A W, Clayton A H, et al. Targeting of a conformationally exposed, tumor-specific epitope of EGFR as a strategy for cancer therapy[J]. Cancer Res, 2012, 72(12): 2924-2930. [3]Kwon I K, Lee S C, Han B, et al. Analysis on the current status of targeted drug delivery to tumors[J]. J Control Release, 2012, 164(2): 108-114. [4]Matsumura Y, Maeda H. A new concept for macromolecular therapeutics in cancer chemotherapy: mechanism of tumoritropic accumulation of proteins and the antitumor agent smancs[J]. Cancer Res, 1986, 46(12 Pt 1): 6387-6392. [5]Bertrand N, Leroux J C. The journey of a drug-carrier in the body: an anatomo-physiological perspective[J]. J Control Release, 2012, 161(2): 152-163. [6]Netti P A, Berk D A, Swartz M A, et al. Role of extracellular matrix assembly in interstitial transport in solid tumors[J]. Cancer Res, 2000, 60(9): 2497-2503. [7]Lentacker I, Geers B, Demeester J, et al. Tumor cell killing efficiency of doxorubicin loaded microbubbles after ultrasound exposure[J]. J Control Release, 2010, 148(1): e113-e114. [8]Kaneko O F, Willmann J K. Ultrasound for molecular imaging and therapy in cancer[J]. Quant Imaging Med Surg, 2012, 2(2): 87-97. [9]Nightingale K, Soo M S, Nightingale R, et al. Acoustic radiation force impulse imaging: in vivo demonstration of clinical feasibility[J]. Ultrasound Med Biol, 2002, 28(2): 227-235. [10]Rychak J J, Klibanov A L, Ley K F, et al. Enhanced targeting of ultrasound contrast agents using acoustic radiation force[J]. Ultrasound Med Biol, 2007, 33(7): 1132-1139. [11]王红卫, 卓忠雄, 赵树文, 等. 大鼠Walker-256皮下移植瘤模型的建立及其超声评价[J]. 临床超声医学杂志, 2007, 9(2): 68-71. [12]Oeffinger B E, Wheatley M A. Development and characterization of a nano-scale contrast agent[J]. Ultrasonics, 2004, 42(1/9): 343-347. [13]Grantab R, Sivananthan S, Tannock I F. The penetration of anticancer drugs through tumor tissue as a function of cellular adhesion and packing density of tumor cells[J]. Cancer Res, 2006, 66(2): 1033-1039. [14]Bae Y H, Park K. Targeted drug delivery to tumors: myths, reality and possibility[J]. J Control Release, 2011, 153(3): 198-205. [15]Griffon-Etienne G, Boucher Y, Brekken C, et al. Taxane-induced apoptosis decompresses blood vessels and lowers interstitial fluid pressure in solid tumors: clinical implications[J]. Cancer Res, 1999, 59(15): 3776-3782. [16]Fan C H, Ting C Y, Lin H J, et al. SPIO-conjugated, doxorubicin-loaded microbubbles for concurrent MRI and focused-ultrasound enhanced brain-tumor drug delivery[J]. Biomaterials, 2013, 34(14): 3706-3715. [17]Liu H L, Hua M Y, Yang H W, et al. Magnetic resonance monitoring of focused ultrasound/magnetic nanoparticle targeting delivery of therapeutic agents to the brain[J]. Proc Natl Acad Sci U S A, 2010, 107(34): 15205-15210. [18]张志伟, 钱雪松. ACUSON S2000彩色多普勒超声诊断仪ARFI技术原理及临床应用[J]. 医疗卫生装备, 2012, 33(8): 125-126. [19]董桂芳, 冉海涛, 王志刚, 等. 低强度聚焦超声联合载药微泡靶向治疗兔VX2肿瘤的实验研究[J]. 中国超声医学杂志, 2013, 29(9): 836-839. [20]Miller D L. Overview of experimental studies of biological effects of medical ultrasound caused by gas body activation and inertial cavitation[J]. Prog Biophys Mol Biol, 2007, 93(1/3): 314-330.
[2]
唐颖,朱悫,刘映江,等.磁共振引导高强度聚焦超声消融犬肾上腺的可行性研究[J].第三军医大学学报,2012,34(16):1621. Tang Ying,Zhu Que,Liu Yingjiang,et al.Experimental study on MRI-guided high-intensity focused ultrasound ablation of adrenal glands in dogs[J].J Third Mil Med Univ,2012,34(12):1621. [2]勒都晓兰,吕发金,陈莉,等.ESWAN序列参数对不同浓度FeSO4溶液成像效果的研究[J].第三军医大学学报,2012,34(18):1901. Ledu Xiaolan,Lu Fajin,Chen Li,et al.Imaging of FeSO4 solution at different concentrations by ESWAN sequence with different parameters[J].J Third Mil Med Univ,2012,34(12):1901. [3]勒都晓兰,吕发金,陈莉,等.ESWAN序列对脑梗死脑内微出血的诊断价值[J].第三军医大学学报,2012,34(19):1998. Ledu Xiaolan,Lu Fajin,Chen Li,et al.Value of enhanced gradient echo T2*-weighted angiography sequence for diagnosis of cerebral infarction accompanying cerebral microbleeds[J].J Third Mil Med Univ,2012,34(12):1998. [4]邱明国,王健,谢兵,等.磁共振扩散张量成像在颅脑疾病的初步应用[J].第三军医大学学报,2005,27(23):2379. [5]林亚南,程敬亮,张勇,等.大脑凸面小型脑膜瘤瘤周水肿的MRI表现与其病理亚型的关系[J].第三军医大学学报,2013,35(04):347. Lin Yanan,Cheng Jingliang,Zhang Yong,et al.MRI findings of peritumoral edema in convex surface small meningioma and its pathological subtypes[J].J Third Mil Med Univ,2013,35(12):347. [6]龚明福,杨华,邹利光,等.包被材料对磁性纳米粒胶束MRI信号和弛豫效能的影响[J].第三军医大学学报,2013,35(01):5. Gong Mingfu,Yang Hua,Zou Liguang,et al.Effect of coating materials on MRI signal intensity and relaxivity of magnetic nanoparticles micelles[J].J Third Mil Med Univ,2013,35(12):5. [7]陈蓉,张伟国,张连阳,等.MRI评价乳腺癌行保乳术的可行性研究[J].第三军医大学学报,2007,29(17):1712. CHEN Rong,ZHANG Wei-guo,ZHANG Lian-yang,et al.Feasibility of utilizing MRI for assessing breast-conserving surgery of breast cancer[J].J Third Mil Med Univ,2007,29(12):1712. [8]秦勇,蔡金华,郑鹤琳,等.磁共振报告基因magA的慢病毒载体质粒构建及体外表达[J].第三军医大学学报,2011,33(13):1346. Qin Yong,Cai Jinhua,Zheng Helin,et al.Construction of recombinant lentivirus expression vector carrying MagA and its in vitro expression[J].J Third Mil Med Univ,2011,33(12):1346. [9]李毅,肖顺武,张学军,等.颅内原发性黑色素瘤诊治体会[J].第三军医大学学报,2008,30(06):551. [10]张园园,赵建农,郭大静,等.MRI动态增强扫描评估HIFU治疗原发性肝癌的疗效[J].第三军医大学学报,2008,30(08):754. ZHANG Yuan-yuan,ZHAO Jian-nong,GUO Da-jing,et al.Evaluation of HIFU effect on hepatocellular carcinoma with dynamic contrast enhanced MRI[J].J Third Mil Med Univ,2008,30(12):754.