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Original Article

Invited review: Noninvasive microwave phased arrays for local hyperthermia: A review

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Pages 429-450 | Received 24 Mar 1988, Accepted 14 Oct 1988, Published online: 09 Jul 2009

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Bhagya Shree Meena & Sushil Kumar. (2024) Temperature response in skin tissue during hyperthermia based on three-phase-lag bioheat model using RBF meshfree method. Numerical Heat Transfer, Part A: Applications 85:2, pages 287-305.
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Miraç Dilruba Geyikoğlu & Bülent Çavuşoğlu. (2022) Microwave hyperthermia with X band flexible hyperthermia applicator for bone and joint cancer treatment. Journal of Electromagnetic Waves and Applications 36:9, pages 1285-1297.
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Amélie Loriaud, Alban Denys, Olivier Seror, Naik Vietti Violi, Antonia Digklia, Rafael Duran, Hervé Trillaud & Arnaud Hocquelet. (2018) Hepatocellular carcinoma abutting large vessels: comparison of four percutaneous ablation systems. International Journal of Hyperthermia 34:8, pages 1171-1178.
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Fernando Bardati & Piero Tognolatti. (2016) Hyperthermia phased arrays pre-treatment evaluation. International Journal of Hyperthermia 32:8, pages 911-922.
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Guido Biffi Gentili & Cosimo Ignesti. (2015) Dual applicator thermal ablation at 2.45 GHz: a numerical comparison and experiments on synchronous versus asynchronous and switched-mode feeding. International Journal of Hyperthermia 31:5, pages 528-537.
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Jason Chiang, Peng Wang & Christopher L. Brace. (2013) Computational modelling of microwave tumour ablations. International Journal of Hyperthermia 29:4, pages 308-317.
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Fernando Bardati & Piero Tognolatti. (2013) Figures of merit and their bounds in radiofrequency heating by phased arrays. International Journal of Hyperthermia 29:3, pages 169-180.
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M. M. Paulides, J. F. Bakker, E. Neufeld, J. van der Zee, P. P. Jansen, P. C. Levendag & G. C. van Rhoon. (2007) The HYPERcollar: A novel applicator for hyperthermia in the head and neck. International Journal of Hyperthermia 23:7, pages 567-576.
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Margarethus M. Paulides, Jurriaan F. Bakker, Adrianus P. M. Zwamborn & Gerard C. van Rhoon. (2007) A head and neck hyperthermia applicator: Theoretical antenna array design. International Journal of Hyperthermia 23:1, pages 59-67.
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L. R. Gavrilov, J. W. Hand, J. W. Hopewell, A. J. Fenn. (1999) Pre-clinical evaluation of a two-channel microwave hyperthermia system with adaptive phase control in a large animal. International Journal of Hyperthermia 15:6, pages 495-507.
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M. K. Gopal, T. C. Cetas & D. Rosman. (1995) Miniature dipole E-field probes for characterizing both phase and amplitude of microwave radiators for hyperthermia. International Journal of Hyperthermia 11:6, pages 769-783.
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H. Kato, N. Uchida, T. Kasai & T. Ishida. (1995) A new applicator utilizing distributed electrodes for hyperthermia: a theoretical approach. International Journal of Hyperthermia 11:2, pages 287-294.
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T. P. Ryan, V. L. Backus & C. T. Coughlin. (1995) Large stationary microstrip arrays for superficial microwave hyperthermia at 433 MHz: SAR analysis and clinical data. International Journal of Hyperthermia 11:2, pages 187-209.
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C. J. Schneider, A. A. C. De Leeuw & J. D. P. Van Dijk. (1992) Quantitative determination of SAR profiles from photographs of the light-emitting diode matrix. International Journal of Hyperthermia 8:5, pages 609-619.
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L. B. Leybovich, B. Emami, R. J. Myerson, W. L. Straube & V. Sathiaseelan. (1991) Dual-antenna applicator for hyperthermia of tumours at intermediate depth. International Journal of Hyperthermia 7:3, pages 455-464.
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J. W. Hand. (1991) Letter to the Editors. International Journal of Hyperthermia 7:1, pages 209-210.
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Peter Fessenden, Daniel S. Kapp & Eric R. Lee. (1990) Letter to the Editors. International Journal of Hyperthermia 6:3, pages 715-716.
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Sun-Young Lee, Giammaria Fiorentini, Attila Marcell Szasz, Gyula Szigeti, Andras Szasz & Carrie Anne Minnaar. (2020) Quo Vadis Oncological Hyperthermia (2020)?. Frontiers in Oncology 10.
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Woo Cheol Choi, Seonho Lim & Young Joong Yoon. (2020) Evaluation of Transmit-Array Lens Antenna for Deep-Seated Hyperthermia Tumor Treatment. IEEE Antennas and Wireless Propagation Letters 19:5, pages 866-870.
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Fangyi Liu, Zhigang Cheng, Zhiyu Han, Xiaoling Yu, Mingan Yu & Ping Liang. (2017) A three-dimensional visualization preoperative treatment planning system for microwave ablation in liver cancer: a simulated experimental study. Abdominal Radiology 42:6, pages 1788-1793.
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Emmanuel Kengne & Ahmed Lakhssassi. (2015) Analytico-numerical study of bio-heat transfer problems with temperature-dependent perfusion. The European Physical Journal Plus 130:5.
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Ki Joon Kim, Woo Cheol Choi & Young Joong Yoon. (2015) Circularly Rotated Array for Dual Polarized Applicator in Superficial Hyperthermia System. Journal of electromagnetic engineering and science 15:1, pages 20-25.
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Fernando Bardati & Piero Tognolatti. (2014) A voxel-based approach in phased-array optimization for microwave hyperthermia. A voxel-based approach in phased-array optimization for microwave hyperthermia.
P.R. Stauffer & M.M. Paulides. 2014. Comprehensive Biomedical Physics. Comprehensive Biomedical Physics 115 151 .
A. Al-Armaghany, K. Tong & T. S. Leung. (2013) Superficial heat reduction technique for a hybrid microwave-optical device. Superficial heat reduction technique for a hybrid microwave-optical device.
Sulafa M Yacoob & Noha S Hassan. (2012) FDTD analysis of a noninvasive hyperthermia system for brain tumors. BioMedical Engineering OnLine 11:1, pages 47.
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Meghan G. Lubner, Christopher L. Brace, J. Louis Hinshaw & Fred T. LeeJrJr. (2010) Microwave Tumor Ablation: Mechanism of Action, Clinical Results, and Devices. Journal of Vascular and Interventional Radiology 21:8, pages S192-S203.
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Christopher L. Brace. (2009) Microwave Ablation Technology: What Every User Should Know. Current Problems in Diagnostic Radiology 38:2, pages 61-67.
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Riadh Habash. 2007. Bioeffects and Therapeutic Applications of Electromagnetic Energy. Bioeffects and Therapeutic Applications of Electromagnetic Energy 221 263 .
Margarethus M. Paulides, Stefan H.J.A. Vossen, Adrianus P.M. Zwamborn & Gerard C. van Rhoon. (2005) Theoretical investigation into the feasibility to deposit RF energy centrally in the head-and-neck region. International Journal of Radiation Oncology*Biology*Physics 63:2, pages 634-642.
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Zhong-Shan Deng & Jing Liu. (2002) Analytical Study on Bioheat Transfer Problems with Spatial or Transient Heating on Skin Surface or Inside Biological Bodies. Journal of Biomechanical Engineering 124:6, pages 638-649.
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Paul Moroz, Stephen K. Jones & Bruce N. Gray. (2001) Status of hyperthermia in the treatment of advanced liver cancer. Journal of Surgical Oncology 77:4, pages 259-269.
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R.J. McGough, A.M. Owens, D. Cindric, J.W. Heim & T.V. Samulski. (2000) The fabrication of conformal ultrasound phased arrays for thermal therapy. The fabrication of conformal ultrasound phased arrays for thermal therapy.
Emad S. Ebbini, Ralf Seip, Philip VanBaren, Osama Haddadin, Claudio Simon & Youssry Y. Botros. 2001. Wiley Encyclopedia of Electrical and Electronics Engineering. Wiley Encyclopedia of Electrical and Electronics Engineering.
V. Sathiaseelan, Bharat B. Mittal, Alan J. Fenn & Allen Taflove. 1998. Advances in Radiation Therapy. Advances in Radiation Therapy 213 245 .
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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R.M. Najafabadi & A.F. Peterson. (1996) Conformable phased array antennas for microwave hyperthermia. Conformable phased array antennas for microwave hyperthermia.
R.M. Najafabadi & A.F. Peterson. (1996) Focusing and impedance properties of conformable phased array antennas for microwave hyperthermia. IEEE Transactions on Microwave Theory and Techniques 44:10, pages 1799-1802.
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M.V. Prior, M.L.D. Lumori, J.W. Hand, G. Lamaitre, C.J. Schneider & J.D.P. van Dijk. (1995) The use of a current sheet applicator array for superficial hyperthermia: incoherent versus coherent operation. IEEE Transactions on Biomedical Engineering 42:7, pages 694-698.
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R. Seip & E.S. Ebbini. (1995) Noninvasive estimation of tissue temperature response to heating fields using diagnostic ultrasound. IEEE Transactions on Biomedical Engineering 42:8, pages 828-839.
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P. VanBaren & E.S. Ebbini. (1995) Multipoint temperature control during hyperthermia treatments: theory and simulation. IEEE Transactions on Biomedical Engineering 42:8, pages 818-827.
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Peter Fessenden & Jeffrey W. Hand. 1995. Radiation Therapy Physics. Radiation Therapy Physics 315 363 .
A. G. Visser & G. C. van Rhoon. 1995. Thermoradiotherapy and Thermochemotherapy. Thermoradiotherapy and Thermochemotherapy 453 472 .
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Maria A. Stuchly. 1995. Radiofrequency Radiation Standards. Radiofrequency Radiation Standards 327 335 .
H. Kato & T. Ishida. (2014) Present and future status of noninvasive selective deep heating using RF in hyperthermia. Medical & Biological Engineering & Computing 31:S1, pages S2-S11.
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M.K. Gopal & T.C. Cetas. (1993) Current sheet applicators for clinical microwave hyperthermia. IEEE Transactions on Microwave Theory and Techniques 41:3, pages 431-437.
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E.R. Lee, T.R. Wilsey, P. Tarczy-Hornoch, D.S. Kapp, P. Fessenden, A. Lohrbach & S.D. Prionas. (1992) Body conformable 915 MHz microstrip array applicators for large surface area hyperthermia. IEEE Transactions on Biomedical Engineering 39:5, pages 470-483.
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C.H. Durney. (1992) Antennas and other electromagnetic applicators in biology and medicine. Proceedings of the IEEE 80:1, pages 194-199.
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H.R. Underwood, A.F. Peterson & R.L. Magin. (1992) Electric-field distribution near rectangular microstrip radiators for hyperthermia heating: theory versus experiment in water. IEEE Transactions on Biomedical Engineering 39:2, pages 146-153.
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L. Martens & C. De Wagter. (1991) A Multi-Channel Generator at 433 MHz with Accurate Amplitude and Phase Control for Hyperthermia Application. A Multi-Channel Generator at 433 MHz with Accurate Amplitude and Phase Control for Hyperthermia Application.
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