For: | Li CX, Xu GL, Jiang ZY, Li JJ, Luo GY, Shan HB, Zhang R, Li Y. Analysis of clinical effect of high-intensity focused ultrasound on liver cancer. World J Gastroenterol 2004; 10(15): 2201-2204 [PMID: 15259065 DOI: 10.3748/wjg.v10.i15.2201] |
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URL: | https://www.wjgnet.com/1007-9327/full/v10/i15/2201.htm |
Number | Citing Articles |
1 |
Theodore J. Dubinsky, Carlos Cuevas, Manjiri K. Dighe, Orpheus Kolokythas, Joo Ha Hwang. High-Intensity Focused Ultrasound: Current Potential and Oncologic Applications. American Journal of Roentgenology 2008; 190(1): 191 doi: 10.2214/AJR.07.2671
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2 |
Gail ter Haar, Sadaf Zahur, Chaturika Jayadewa. Interventional Radiological Treatment of Liver Tumors. 2008; : 92 doi: 10.1017/CBO9780511575433.007
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3 |
Christakis Damianou, Kleanthis Ioannides, Nicos Mylonas, Venediktos Hadjisavas, Andreas Couppis, Dimitris Iosif. Liver ablation using a high intensity focused ultrasound system and MRI guidance. 2009 9th International Conference on Information Technology and Applications in Biomedicine 2009; : 1 doi: 10.1109/ITAB.2009.5394418
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4 |
Seung Eun Jung, Se Hyun Cho, Jin Hee Jang, Joon-Yeol Han. High-intensity focused ultrasound ablation in hepatic and pancreatic cancer: complications. Abdominal Imaging 2011; 36(2): 185 doi: 10.1007/s00261-010-9628-2
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5 |
Kelvin K.C. Ng, Ronnie T.P. Poon, See Ching Chan, Kenneth S.H. Chok, Tan To Cheung, Helen Tung, Ferdinand Chu, Wai Kuen Tso, Wan Ching Yu, Chung Mau Lo, Sheung Tat Fan. High-Intensity Focused Ultrasound for Hepatocellular Carcinoma. Annals of Surgery 2011; 253(5): 981 doi: 10.1097/SLA.0b013e3182128a8b
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6 |
Belhassen Seket, Cyril Lafon, François Mithieux, Cedric Goldenstedt, Christian Paquet, Jean-Yves Chapelon, Jean Yves Scoazec, Michel Rivoire, Dominique Cathignol. Developing an Interstitial Ultrasound Applicator for Thermal Ablation in Liver: Results of Animal Experiments. Journal of Surgical Research 2007; 142(1): 81 doi: 10.1016/j.jss.2006.10.025
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7 |
P Ramaekers, M de Greef, J M M van Breugel, C T W Moonen, M Ries. Increasing the HIFU ablation rate through an MRI-guided sonication strategy using shock waves: feasibility in thein vivoporcine liver. Physics in Medicine and Biology 2016; 61(3): 1057 doi: 10.1088/0031-9155/61/3/1057
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8 |
Valérie Rouffiac, Jean-Sébastien Duret, Pierre Péronneau, Nathalie Dehez, Paule Opolon, Alain Roche, Nathalie Lassau. Combination of HIFU therapy with contrast-enhanced sonography for quantitative assessment of therapeutic efficiency on tumor grafted mice. Ultrasound in Medicine & Biology 2006; 32(5): 729 doi: 10.1016/j.ultrasmedbio.2006.02.1403
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9 |
G. A. Pan’shin, N. V. Nudnov. Using High-Intensity Focused Ultrasound in Clinical Oncology. Journal of radiology and nuclear medicine 2025; 105(4): 224 doi: 10.20862/0042-4676-2024-105-4-224-231
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10 |
Eric K. Juang, Lance H. De Koninck, Kaleb S. Vuong, Aswin Gnanaskandan, Chao-Tsung Hsiao, Michalakis A. Averkiou. Controlled Hyperthermia With High-Intensity Focused Ultrasound and Ultrasound Contrast Agent Microbubbles in Porcine Liver. Ultrasound in Medicine & Biology 2023; 49(8): 1852 doi: 10.1016/j.ultrasmedbio.2023.04.015
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11 |
Danial Shahmirzadi, Gary Y. Hou, Jiangang Chen, Elisa E. Konofagou. Ex Vivo Characterization of Canine Liver Tissue Viscoelasticity after High-Intensity Focused Ultrasound Ablation. Ultrasound in Medicine & Biology 2014; 40(2): 341 doi: 10.1016/j.ultrasmedbio.2013.09.016
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12 |
Wen Luo, Xiaodong Zhou, Guangbin He, Qiuyang Li, Xiaoying Zheng, Zhiyong Fan, Qing Liu, Ming Yu, Zenghui Han, Jun Zhang, Yunqiu Qian. Ablation of High Intensity Focused Ultrasound Combined with SonoVue on Rabbit VX2 Liver Tumors: Assessment with Conventional Gray-Scale US, Conventional Color/Power Doppler US, Contrast-Enhanced Color Doppler US, and Contrast-Enhanced Pulse-Inversion Harmonic US. Annals of Surgical Oncology 2008; 15(10): 2943 doi: 10.1245/s10434-008-0032-x
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13 |
Hui Cai, Lu-Lu Chen, Bin Ye, Ai-Bo Liu, Jing Zhang, Yi-Feng Zhao. The destructive effects of high-intensity focused ultrasound on hydatid cysts enhanced by ultrasound contrast agent and superabsorbent polymer alone or in combination. Parasitology Research 2013; 112(2): 707 doi: 10.1007/s00436-012-3191-4
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14 |
Tal Grutman, Tali Ilovitsh. Dense speed-of-sound shift imaging for ultrasonic thermometry. Physics in Medicine & Biology 2023; 68(21): 215004 doi: 10.1088/1361-6560/acfec3
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15 |
Yu‐Yuan Li, Wei‐Hong Sha, Yong‐Jian Zhou, Yu‐Qiang Nie. Short and long term efficacy of high intensity focused ultrasound therapy for advanced hepatocellular carcinoma. Journal of Gastroenterology and Hepatology 2007; 22(12): 2148 doi: 10.1111/j.1440-1746.2006.04719.x
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16 |
Moslem Sadeghi-Goughari, Soo Jeon, Hyock-Ju Kwon. Carbon nanotube-mediated high intensity focused ultrasound. Nano Futures 2021; 5(2): 025002 doi: 10.1088/2399-1984/abfebc
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17 |
Giuseppe Garcea, David P. Berry. Regional Cancer Therapy. Cancer Drug Discovery and Development 2007; : 229 doi: 10.1007/978-1-59745-225-0_14
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18 |
Victor Barrere, Marine Sanchez, Sophie Cambronero, Aurelien Dupré, Michel Rivoire, David Melodelima. Evaluation of Ultrasonic Attenuation in Primary and Secondary Human Liver Tumors and Its Potential Effect on High-Intensity Focused Ultrasound Treatment. Ultrasound in Medicine & Biology 2021; 47(7): 1761 doi: 10.1016/j.ultrasmedbio.2021.03.014
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19 |
Ji-Zhu Xia, Fang-Lin Xie, Li-Feng Ran, Xun-Peng Xie, Yan-Min Fan, Feng Wu. High-Intensity Focused Ultrasound Tumor Ablation Activates Autologous Tumor-Specific Cytotoxic T Lymphocytes. Ultrasound in Medicine & Biology 2012; 38(8): 1363 doi: 10.1016/j.ultrasmedbio.2012.03.009
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20 |
Feng Wu. Extracorporeal high intensity focused ultrasound in the treatment of patients with solid malignancy. Minimally Invasive Therapy & Allied Technologies 2006; 15(1): 26 doi: 10.1080/13645700500470124
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21 |
Yuanyuan Zhang, Jiannong Zhao, Dajing Guo, Weijia Zhong, Lifen Ran. Evaluation of short-term response of high intensity focused ultrasound ablation for primary hepatic carcinoma: Utility of contrast-enhanced MRI and diffusion-weighted imaging. European Journal of Radiology 2011; 79(3): 347 doi: 10.1016/j.ejrad.2010.06.039
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22 |
David Schlesinger, Stanley Benedict, Chris Diederich, Wladyslaw Gedroyc, Alexander Klibanov, James Larner. MR-guided focused ultrasound surgery, present and future. Medical Physics 2013; 40(8): 080901 doi: 10.1118/1.4811136
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23 |
Kathryn Nightingale, Brian Fahey, Stephen Hsu, Kristin Frinkley, Jeremy Dahl, Mark Palmeri, Liang Zhai, Gianmarco Pinton, Gregg Trahey. ON THE POTENTIAL FOR GUIDANCE OF ABLATION THERAPY USING ACOUSTIC RADIATION FORCE IMPULSE IMAGING. 2007 4th IEEE International Symposium on Biomedical Imaging: From Nano to Macro 2007; : 1116 doi: 10.1109/ISBI.2007.357052
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24 |
Hao-Li Liu, Han-Yi Hsieh, Li-An Lu, Chiao-Wen Kang, Ming-Fang Wu, Chun-Yen Lin. Low-pressure pulsed focused ultrasound with microbubbles promotes an anticancer immunological response. Journal of Translational Medicine 2012; 10(1) doi: 10.1186/1479-5876-10-221
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25 |
Ryosuke Iwasaki, Ryo Takagi, Ryo Nagaoka, Hayato Jimbo, Shin Yoshizawa, Yoshifumi Saijo, Shin-ichiro Umemura. Monitoring of high-intensity focused ultrasound treatment by shear wave elastography induced by two-dimensional-array therapeutic transducer. Japanese Journal of Applied Physics 2016; 55(7S1): 07KF05 doi: 10.7567/JJAP.55.07KF05
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26 |
Sofia Gereta, Judith Stangl‐Kremser, Tenny R. Zhang, Jim C. Hu. The Application of Heat in Oncology. 2023; : 425 doi: 10.1002/9781119799627.ch25
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27 |
Warren A. Campbell, Mina S. Makary. Advances in Image-Guided Ablation Therapies for Solid Tumors. Cancers 2024; 16(14): 2560 doi: 10.3390/cancers16142560
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28 |
Carmelo Militello, Leonardo Rundo, Fabrizio Vicari, Luca Agnello, Giovanni Borasi, Salvatore Vitabile, Giorgio Russo. A Computational Study on Temperature Variations in MRgFUS Treatments Using PRF Thermometry Techniques and Optical Probes. Journal of Imaging 2021; 7(4): 63 doi: 10.3390/jimaging7040063
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29 |
Moslem Sadeghi-Goughari, Hossein Rajabzadeh, Jeong-woo Han, Hyock-Ju Kwon. Artificial intelligence-assisted ultrasound-guided focused ultrasound therapy: a feasibility study. International Journal of Hyperthermia 2023; 40(1) doi: 10.1080/02656736.2023.2260127
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30 |
J.M. Caballero, P. Borrat, M. Paraira, L. Martí, J. Ristol. Ultrasonidos extracorpóreos de alta intensidad: alternativa terapéutica del tumor renal. Actas Urológicas Españolas 2010; 34(5): 403 doi: 10.1016/j.acuro.2010.01.018
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31 |
Wen Luo, Xiaodong Zhou, Ming Yu, Guangbin He, Xiaoying Zheng, Qiuyang Li, Qing Liu, Zenghui Han, Jun Zhang, Yunqiu Qian. Ablation of High-Intensity Focused Ultrasound Assisted with SonoVue on Rabbit VX2 Liver Tumors: Sequential Findings with Histopathology, Immunohistochemistry, and Enzyme Histochemistry. Annals of Surgical Oncology 2009; 16(8): 2359 doi: 10.1245/s10434-009-0419-3
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32 |
Bo Xie, Jiajun Ling, Weiming Zhang, Xueqin Huang, Jihua Zhen, Yanzhe Huang. The efficacy of high-intensity focused ultrasound (HIFU) in advanced pancreatic cancer. Chinese Journal of Clinical Oncology 2008; 5(3): 183 doi: 10.1007/s11805-008-0183-3
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33 |
Hui Cao, Zhong Xu, Hao Long, Ling-ling Zhang, Jun Zhang, Zhi-ping Peng, Shao-lin Li. Transcatheter Arterial Chemoembolization in Combination With High-Intensity Focused Ultrasound for Unresectable Hepatocellular Carcinoma: A Systematic Review and Meta-Analysis of the Chinese Literature. Ultrasound in Medicine & Biology 2011; 37(7): 1009 doi: 10.1016/j.ultrasmedbio.2011.03.003
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34 |
Patrick Honeck, Kristina Peters, Gunnar Wendt-Nordahl, Christian Bolenz, Peter Alken, Maurice-Stephan Michel, Jürgen W. Jenne, Axel Häcker. Magnetic Resonance Imaging as a Technique for Assessing Noninvasive Tissue Ablation Using High-Intensity Ultrasound: An Experimental Study. Journal of Endourology 2009; 23(1): 161 doi: 10.1089/end.2008.0362
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35 |
Kun Yang, Qiang Li, Hengxin Liu, Qingxuan Zeng, Dejia Cai, Jiahong Xu, Yingying Zhou, Po-Hsiang Tsui, Xiaowei Zhou. Suppressing HIFU interference in ultrasound images using 1D U-Net-based neural networks. Physics in Medicine & Biology 2024; 69(7): 075006 doi: 10.1088/1361-6560/ad2b95
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36 |
Hitoshi Maruyama, Masaaki Ebara. Recent applications of ultrasound: diagnosis and treatment of hepatocellular carcinoma. International Journal of Clinical Oncology 2006; 11(4): 258 doi: 10.1007/s10147-006-0585-2
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37 |
Zhu Yang, You-De Cao, Li-Na Hu, Zhi-Biao Wang. Feasibility of laparoscopic high-intensity focused ultrasound treatment for patients with uterine localized adenomyosis. Fertility and Sterility 2009; 91(6): 2338 doi: 10.1016/j.fertnstert.2008.03.017
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38 |
C. Yiallouras, C. Damianou. Review of MRI positioning devices for guiding focused ultrasound systems. The International Journal of Medical Robotics and Computer Assisted Surgery 2015; 11(2): 247 doi: 10.1002/rcs.1601
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39 |
Elaheh Taghaddos, T. Ma, Hui Zhong, Qifa Zhou, M. X. Wan, Ahmad Safari. Fabrication and Characterization of Single-Aperture 3.5-MHz BNT-Based Ultrasonic Transducer for Therapeutic Application. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 2018; 65(4): 582 doi: 10.1109/TUFFC.2018.2793874
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40 |
Dejia Cai, Kun Yang, Xintao Liu, Jiahong Xu, Yao Ran, Yang Xu, Xiaowei Zhou. Suppressing the HIFU interference in ultrasound guiding images with a diffusion-based deep learning model. Computer Methods and Programs in Biomedicine 2024; 254: 108304 doi: 10.1016/j.cmpb.2024.108304
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41 |
T. A. Leslie, J. E. Kennedy. High intensity focused ultrasound in the treatment of abdominal and gynaecological diseases. International Journal of Hyperthermia 2007; 23(2): 173 doi: 10.1080/02656730601150514
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42 |
J.M. Caballero, P. Borrat, M. Paraira, L. Martí, J. Ristol. Extracorporeal high-intensity focused ultrasound: Therapeutic alternative for renal tumors. Actas Urológicas Españolas (English Edition) 2010; 34(5): 403 doi: 10.1016/S2173-5786(10)70096-2
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43 |
Qian Chen, Hengte Ke, Zhifei Dai, Zhuang Liu. Nanoscale theranostics for physical stimulus-responsive cancer therapies. Biomaterials 2015; 73: 214 doi: 10.1016/j.biomaterials.2015.09.018
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44 |
Peng-Zhou Li, Shai-Hong Zhu, Wei He, Li-Yong Zhu, Sheng-Ping Liu, Yan Liu, Guo-Hui Wang, Fei Ye. High-intensity focused ultrasound treatment for patients with unresectable pancreatic cancer. Hepatobiliary & Pancreatic Diseases International 2012; 11(6): 655 doi: 10.1016/S1499-3872(12)60241-0
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45 |
Zahra Izadifar, Zohreh Izadifar, Dean Chapman, Paul Babyn. An Introduction to High Intensity Focused Ultrasound: Systematic Review on Principles, Devices, and Clinical Applications. Journal of Clinical Medicine 2020; 9(2): 460 doi: 10.3390/jcm9020460
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46 |
Anastasia Antoniou, Marinos Giannakou, Nikolas Evripidou, Georgios Evripidou, Kyriakos Spanoudes, Georgios Menikou, Christakis Damianou. Robotic system for magnetic resonance guided focused ultrasound ablation of abdominal cancer. The International Journal of Medical Robotics and Computer Assisted Surgery 2021; 17(5) doi: 10.1002/rcs.2299
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47 |
David Cranston. A review of high intensity focused ultrasound in relation to the treatment of renal tumours and other malignancies. Ultrasonics Sonochemistry 2015; 27: 654 doi: 10.1016/j.ultsonch.2015.05.035
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48 |
C.Y. Hao, J.F. Ji. Surgical treatment of liver metastases of colorectal cancer: Strategies and controversies in 2006. European Journal of Surgical Oncology (EJSO) 2006; 32(5): 473 doi: 10.1016/j.ejso.2006.02.016
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49 |
Julien Garnon, Georgia Tsoumakidou, Iulian Enescu, Xavier Buy, Afshin Gangi. Interventional Radiology Techniques in Ablation. 2013; : 29 doi: 10.1007/978-0-85729-094-6_5
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50 |
Galina Fedotovskikh, Galiya Shaymardanova, Nurlan Zhampeissov. Morphology of echinococcal liver lesions during treatment with high-intensity focused ultrasound. Journal of Clinical Medicine of Kazakhstan 2022; 19(4): 28 doi: 10.23950/jcmk/12285
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51 |
Eric Delabrousse, François Mithieux, Alain Birer, Sabrina Chesnais, Rares Salomir, Jean-Yves Chapelon, Cyril Lafon. Percutaneous Sonographically Guided Interstitial US Ablation: Experimentation in an In Vivo Pig Liver Model. Journal of Vascular and Interventional Radiology 2008; 19(12): 1749 doi: 10.1016/j.jvir.2008.09.018
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52 |
Krisztina Fischer, Wladyslaw Gedroyc, Ferenc A. Jolesz. Focused Ultrasound as a Local Therapy for Liver Cancer. The Cancer Journal 2010; 16(2): 118 doi: 10.1097/PPO.0b013e3181db7c32
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53 |
Nicholas Kotewall, Brian H. H. Lang. High-intensity focused ultrasound ablation as a treatment for benign thyroid diseases: the present and future. Ultrasonography 2019; 38(2): 135 doi: 10.14366/usg.18040
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54 |
Xiaozhou Liu, Chang Yin, Xiufen Gong, Wenwu Cao. Theoretical and Experimental Study on Temperature Elevation behind Ribs Caused by Weakly Focused Ultrasound. Ultrasound in Medicine & Biology 2010; 36(10): 1704 doi: 10.1016/j.ultrasmedbio.2010.07.018
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55 |
Alvaro Zuniga, Nathan Lawrentschuk, Michael A. S. Jewett. Organ-sparing approaches for testicular masses. Nature Reviews Urology 2010; 7(8): 454 doi: 10.1038/nrurol.2010.100
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56 |
Abid Irshad, Munazza Anis, Susan J. Ackerman. Current Role of Ultrasound in Chronic Liver Disease: Surveillance, Diagnosis and Management of Hepatic Neoplasms. Current Problems in Diagnostic Radiology 2012; 41(2): 43 doi: 10.1067/j.cpradiol.2011.07.003
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57 |
Hitoshi Maruyama, Masaharu Yoshikawa, Osamu Yokosuka. Current role of ultrasound for the management of hepatocellular carcinoma. World Journal of Gastroenterology 2008; 14(11): 1710-1719 doi: 10.3748/wjg.14.1710
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58 |
Priyal Chikhaliwala, Sudeshna Chandra. Poly‐amidoamine Dendrimers@Fe3O4 Based Electrochemiluminescent Nanomaterials for Biosensing of Liver Cancer Biomarkers. Electroanalysis 2020; 32(11): 2404 doi: 10.1002/elan.202060075
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59 |
Michael Yong Park, Seung Eun Jung, Se Hyun Cho, Xiang-Hao Piao, Seong Tai Hahn, Joon-Yeol Han, In Sook Woo. Preliminary experience using high intensity focused ultrasound for treating liver metastasis from colon and stomach cancer. International Journal of Hyperthermia 2009; 25(3): 180 doi: 10.1080/02656730802641949
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60 |
T Leslie, R Ritchie, R Illing, G Ter Haar, R Phillips, M Middleton, BM Bch, F Wu, D Cranston. High-intensity focused ultrasound treatment of liver tumours: post-treatment MRI correlates well with intra-operative estimates of treatment volume. The British Journal of Radiology 2012; 85(1018): 1363 doi: 10.1259/bjr/56737365
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