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Original Article

Hot spots created at skin-air interfaces during ultrasound hyperthermia

Pages 1005-1012 | Received 14 Jul 1989, Accepted 05 Feb 1990, Published online: 09 Jul 2009

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Read on this site (5)

Marc A. Santos, Sheng-Kai Wu, Zhe Li, David E. Goertz & Kullervo Hynynen. (2018) Microbubble-assisted MRI-guided focused ultrasound for hyperthermia at reduced power levels. International Journal of Hyperthermia 35:1, pages 599-611.
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Emad S. Ebbini & Gail Ter Haar. (2015) Ultrasound-guided therapeutic focused ultrasound: Current status and future directions. International Journal of Hyperthermia 31:2, pages 77-89.
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K. Hynynen & N. McDannold. (2004) MRI guided and monitored focused ultrasound thermal ablation methods: a review of progress. International Journal of Hyperthermia 20:7, pages 725-737.
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S. Fujishiro, M. Mitsumori, Y. Nishimura, Y. Okuno, Y. Nagata, M. Hiraoka, T. Sano, T. Marume & N. Takayama. (1998) Increased heating efficiency of hyperthermia using an ultrasound contrast agent: A phantom study. International Journal of Hyperthermia 14:5, pages 495-502.
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K. Hynynen, D. Shimm, D. Anhalt, B. Stea, H. Sykes, J. R. Cassady & R. B. Roemer. (1990) Temperature distributions during clinical scanned, focused ultrasound hyperthermia treatments. International Journal of Hyperthermia 6:5, pages 891-908.
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Articles from other publishers (18)

Yongheon Kim, Hyunseon Yu, Sunghwan An, Donghoon Ha & Byungjo Jung. (2023) Handheld microfocused ultrasound device for facial lifting: A preliminary study of ULTIGHT . Journal of Cosmetic Dermatology 22:11, pages 2982-2988.
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Marc A. Santos, Sheng-Kai WuMaximilian Regenold, Christine AllenDavid E. Goertz & Kullervo Hynynen. (2020) Novel fractionated ultrashort thermal exposures with MRI-guided focused ultrasound for treating tumors with thermosensitive drugs. Science Advances 6:36.
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Aizan Hassanuddin, Jun-Ho Choi, Dong-Wan Seo, Choong Heon Ryu, Su-Hui Kim, Do Hyun Park, Sang Soo Lee, Sung Koo Lee & Myung-Hwan Kim. (2014) Factors Affecting Tumor Ablation during High Intensity Focused Ultrasound Treatment. Gut and Liver 8:4, pages 433-437.
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Shunkang Rong, Kamsang Woo, Qi Zhou, Que Zhu, Qi Wu, Qi Wang, Changming Deng, Dichuan Liu, Gang Yang, Yonghong Jiang, Zhibiao Wang & Jing Huang. (2013) Septal Ablation Induced by Transthoracic High-Intensity Focused Ultrasound in Canines. Journal of the American Society of Echocardiography 26:10, pages 1228-1234.
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Robert Staruch, Rajiv Chopra & Kullervo Hynynen. (2012) Hyperthermia in Bone Generated with MR Imaging–controlled Focused Ultrasound: Control Strategies and Drug Delivery. Radiology 263:1, pages 117-127.
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S. H. R. Hosseini, Xinliang Zheng & S. Vaezy. (2011) Effects of gas pockets on high-intensity focused ultrasound field. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 58:6, pages 1203-1210.
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Penny K. Sneed, Paul R. Stauffer, Gloria C. Li, Xiaorong Sun & Robert J. Myerson. 2010. Leibel and Phillips Textbook of Radiation Oncology. Leibel and Phillips Textbook of Radiation Oncology 1564 1593 .
Vesna Zderic, Jessica Foley, Wenbo Luo & Shahram Vaezy. (2008) Prevention of post-focal thermal damage by formation of bubbles at the focus during high intensity focused ultrasound therapy. Medical Physics 35:10, pages 4292-4299.
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Nathan McDannold. 2007. MRI-Guided Focused Ultrasound Surgery. MRI-Guided Focused Ultrasound Surgery 55 67 .
Behnia Sohrab, Ghalichi Farzan, Bonabi Ashkan & Jafari Amin. (2006) Ultrasound Thermotherapy of Breast: Theoretical Design of Transducer and Numerical Simulation of Procedure. Japanese Journal of Applied Physics 45:3R, pages 1856.
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Eduardo G. Moros, Xiaobing Fan & William L. Straube. (1999) Ultrasound power deposition model for the chest wall. Ultrasound in Medicine & Biology 25:8, pages 1275-1287.
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Lili Chen, Gail ter Haar, C.R Hill, Suzanne A Eccles & Gary Box. (1998) Treatment of implanted liver tumors with focused ultrasound. Ultrasound in Medicine & Biology 24:9, pages 1475-1488.
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Y.Y. Botros, E.S. Ebbini & J.L. Volakis. (1998) Two-step hybrid virtual array ray (VAR) technique for focusing through the rib cage. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 45:4, pages 989-1000.
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R.J. McGough, M.L. Kessler, E.S. Ebbini & C.A. Cain. (1996) Treatment planning for hyperthermia with ultrasound phased arrays. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 43:6, pages 1074-1084.
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Peter Fessenden & Jeffrey W. Hand. 1995. Radiation Therapy Physics. Radiation Therapy Physics 315 363 .
K. Hynynen. 1995. Thermoradiotherapy and Thermochemotherapy. Thermoradiotherapy and Thermochemotherapy 253 277 .
M K Hinders, T -M Fang, M F M Collins & J J Collins. (1994) An analytic solution for energy deposition in model spherical tumours undergoing ultrasound-hyperthermia treatments. Physics in Medicine and Biology 39:1, pages 107-132.
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D.J. Watmough, R. Lakshmi, F. Ghezzi, K.M. Quan, J.A. Watmough, E. Khizhnyak, T.N. Pashovkin & A.P. Sarvazyan. (1993) The effect of gas bubbles on the production of ultrasound hyperthermia at 0.75 MHz: A phantom study. Ultrasound in Medicine & Biology 19:3, pages 231-241.
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