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Original Article

A 433 MHz Lucite Cone waveguide applicator for superficial hyperthermia

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Pages 13-27 | Received 19 Nov 1996, Accepted 28 Aug 1997, Published online: 09 Jul 2009

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Read on this site (22)

H. Petra Kok, Erik N. K. Cressman, Wim Ceelen, Christopher L. Brace, Robert Ivkov, Holger Grüll, Gail ter Haar, Peter Wust & Johannes Crezee. (2020) Heating technology for malignant tumors: a review. International Journal of Hyperthermia 37:1, pages 711-741.
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Tomas Drizdal, Margarethus M. Paulides, Netteke van Holthe & Gerard C. van Rhoon. (2018) Hyperthermia treatment planning guided applicator selection for sub-superficial head and neck tumors heating. International Journal of Hyperthermia 34:6, pages 704-713.
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Nathalie van den Tempel, Hanny Odijk, Netteke van Holthe, Kishan Naipal, Anja Raams, Berina Eppink, Dik C. van Gent, Jose Hardillo, Gerda M. Verduijn, Jan C. Drooger, Gerard C. van Rhoon, Dineke (H.) P.M. Smedts, Helena C. van Doorn, Joost L. Boormans, Agnes Jager, Martine Franckena & Roland Kanaar. (2018) Heat-induced BRCA2 degradation in human tumours provides rationale for hyperthermia-PARP-inhibitor combination therapies. International Journal of Hyperthermia 34:4, pages 407-414.
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Soni Singh, Bhagirath Sahu & S.P. Singh. (2018) Direct-Contact Water-Loaded Metal-Dielectric Wall Diagonal Horn Applicators for Hyperthermia. IETE Technical Review 35:2, pages 122-131.
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Hana Dobšíček Trefná, Hans Crezee, Manfred Schmidt, Dietmar Marder, Ulf Lamprecht, Michael Ehmann, Josefin Hartmann, Jacek Nadobny, Johanna Gellermann, Netteke van Holthe, Pirus Ghadjar, Nicoletta Lomax, Sultan Abdel-Rahman, Christoph Bert, Akke Bakker, Mark D. Hurwitz, Chris J. Diederich, Paul R. Stauffer & Gerard C. van Rhoon. (2017) Quality assurance guidelines for superficial hyperthermia clinical trials: I. Clinical requirements. International Journal of Hyperthermia 33:4, pages 471-482.
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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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T. Drizdal, M.M. Paulides, J. Vrba & G.C. van Rhoon. (2013) Waveguide-based applicators for superficial hyperthermia treatment: is tuning really required?. Journal of Electromagnetic Waves and Applications 27:6, pages 682-690.
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Marianne Linthorst, Gerard C. van Rhoon, Albert N. van Geel, Margreet Baaijens, Wendy Ghidey, Maria Pia Broekmeyer-Reurink & Jacoba van der Zee. (2012) The tolerance of reirradiation and hyperthermia in breast cancer patients with reconstructions. International Journal of Hyperthermia 28:3, pages 267-277.
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Maarten de Bruijne, Jacoba Van der zee, Ali Ameziane & Gerard C. Van Rhoon. (2011) Quality control of superficial hyperthermia by treatment evaluation. International Journal of Hyperthermia 27:3, pages 199-213.
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J. Van Der Zee, M. De Bruijne, J.W.M. Mens, A. Ameziane, M.P. Broekmeyer-Reurink, T. Drizdal, M. Linthorst & G.C. Van Rhoon. (2010) Reirradiation combined with hyperthermia in breast cancer recurrences: Overview of experience in Erasmus MC. International Journal of Hyperthermia 26:7, pages 638-648.
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J.F. Bakker, M.M. Paulides, A.H. Westra, H. Schippers & G.C. Van Rhoon. (2010) Design and test of a 434 MHz multi-channel amplifier system for targeted hyperthermia applicators. International Journal of Hyperthermia 26:2, pages 158-170.
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J. van der Zee, Z. Vujaskovic, M. Kondo & T. Sugahara. (2008) The Kadota Fund International Forum 2004–Clinical group consensus*. International Journal of Hyperthermia 24:2, pages 111-122.
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K. Arunachalam, P. Maccarini, T. Juang, C. Gaeta & P. R. Stauffer. (2008) Performance evaluation of a conformal thermal monitoring sheet sensor array for measurement of surface temperature distributions during superficial hyperthermia treatments. International Journal of Hyperthermia 24:4, pages 313-325.
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M. de Bruijne, D. H. M. Wielheesen, J. van der Zee, N. Chavannes & G. C. van Rhoon. (2007) Benefits of superficial hyperthermia treatment planning: Five case studies. International Journal of Hyperthermia 23:5, pages 417-429.
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M. L. Van Der Gaag, M. De Bruijne, T. Samaras, J. Van Der Zee & G. C. Van Rhoon. (2006) Development of a guideline for the water bolus temperature in superficial hyperthermia. International Journal of Hyperthermia 22:8, pages 637-656.
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J. E. Johnson, D. G. Neuman, P. F. Maccarini, T. Juang, P. R. Stauffer & P. Turner. (2006) Evaluation of a dual-arm Archimedean spiral array for microwave hyperthermia. International Journal of Hyperthermia 22:6, pages 475-490.
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M. de Bruijne, T. Samaras, J. F. Bakker & G. C. van Rhoon. (2006) Effects of waterbolus size, shape and configuration on the SAR distribution pattern of the Lucite cone applicator. International Journal of Hyperthermia 22:1, pages 15-28.
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Paul R. Stauffer. (2005) Evolving technology for thermal therapy of cancer. International Journal of Hyperthermia 21:8, pages 731-744.
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W. M. Lee, E. A. Gelvich, P. Van Der Baan, V. N. Mazokhin & G. C. Van Rhoon. (2004) Assessment of the performance characteristics of a prototype 12-element capacitive contact flexible microstrip applicator (CFMA-12) for superficial hyperthermia. International Journal of Hyperthermia 20:6, pages 607-624.
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R. S. J. P. KAATEE, G. C. VAN RHOON. (1999) An electric field measurement system, using a two-dimensional array of diodes. International Journal of Hyperthermia 15:5, pages 441-454.
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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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P. J. M. Rietveld, M. L. D. Lumori, J. W. Hand, M. V. Prior, J. Van Der Zee & G. C. Van Rhoon. (1998) Effectiveness of the Gaussian Beam Model in Predicting Sar Distributions from the Lucite Cone Applicator. International Journal of Hyperthermia 14:3, pages 293-308.
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Muthu Rattina Subash Ramu & Kavitha Arunachalam. (2023) Miniaturized 434 MHz Cavity Encapsulated Patch Antenna for Superficial Hyperthermia Treatment. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology 7:4, pages 392-399.
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Azharuddin Khan, Satya Kesh Dubey & Amit Kumar Singh. (2023) Slot-Loaded Pentagon Microstrip Patch Antenna for Hyperthermia Application at 434 MHz. MAPAN 38:4, pages 913-921.
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V. V. Kosterev & V. N. Mazokhin. (2023) Development of Equipment for Simultaneous Hyperthermia and Radiation Therapy of Malignant Neoplasms. Physics of Atomic Nuclei 85:11, pages 1931-1942.
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Muthu Rattina Subash Ramu & Kavitha Arunachalam. (2022) Microstrip C patch antenna for hyperthermia treatment: A comparative numerical study with cavity backed C patch antennas. Microstrip C patch antenna for hyperthermia treatment: A comparative numerical study with cavity backed C patch antennas.
Morteza Ghaderi Aram, Hadi Aliakbarian & Hana Dobšíček Trefná. (2022) An ultra‐wideband compact design for hyperthermia: Open ridged‐waveguide antenna. IET Microwaves, Antennas & Propagation 16:2-3, pages 137-152.
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H. Petra Kok & Johannes Crezee. (2021) Hyperthermia Treatment Planning: Clinical Application and Ongoing Developments. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology 5:3, pages 214-222.
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Faezeh Rahimi & Somayyeh Chamaani. (2020) Applying a repetitive time‐reversal method to reduce input power of a wearable hyperthermia applicator for breast cancer treatment. Microwave and Optical Technology Letters 62:12, pages 3754-3766.
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H. Petra Kok, Jort Groen, Akke Bakker & Johannes Crezee. (2020) Modelling Curved Contact Flexible Microstrip Applicators for Patient-Specific Superficial Hyperthermia Treatment Planning. Cancers 12:3, pages 656.
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H.P. Kok & J. Crezee. (2020) Hyperthermia treatment planning: clinical application and ongoing research. Hyperthermia treatment planning: clinical application and ongoing research.
Minyoung Suh, Sergio Curto, Punit Prakash & Gerard van Rhoon. 2020. Wearable Bioelectronics. Wearable Bioelectronics 179 200 .
Soni Singh, Bhagirath Sahu & S. P. Singh. (2018) Bi-layered/tri-layered bio-media in direct contact with metal diagonal horn for hyperthermia. International Journal of Microwave and Wireless Technologies 10:8, pages 921-932.
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S. P. Singh. (2018) Microwave applicators for hyperthermia treatment of cancer: An overview. Microwave applicators for hyperthermia treatment of cancer: An overview.
Riadh W.Y. Habash. 2018. Thermoregulation: From Basic Neuroscience to Clinical Neurology, Part II. Thermoregulation: From Basic Neuroscience to Clinical Neurology, Part II 853 868 .
David Vrba, Jan Vrba, Dario B. Rodrigues & Paul Stauffer. (2017) Numerical investigation of novel microwave applicators based on zero-order mode resonance for hyperthermia treatment of cancer. Journal of the Franklin Institute 354:18, pages 8734-8746.
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Hana Dobšíček Trefná, Johannes Crezee, Manfred Schmidt, Dietmar Marder, Ulf Lamprecht, Michael Ehmann, Jacek Nadobny, Josefin Hartmann, Nicolleta Lomax, Sultan Abdel-Rahman, Sergio Curto, Akke Bakker, Mark D. Hurwitz, Chris J. Diederich, Paul R. Stauffer & Gerard C. Van Rhoon. (2017) Quality assurance guidelines for superficial hyperthermia clinical trialsLeitlinien zur Qualitätssicherung der lokalen Hyperthermie in klinischen Studien. Strahlentherapie und Onkologie 193:5, pages 351-366.
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Soni Singh & Surya Pal Singh. (2015) Water-loaded metal-dielectric wall diagonal horn antenna for hyperthermia application. Water-loaded metal-dielectric wall diagonal horn antenna for hyperthermia application.
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Soni Singh & Surya Pal Singh. (2015) Water‐loaded metal diagonal horn applicator for hyperthermia. IET Microwaves, Antennas & Propagation 9:8, pages 814-821.
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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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Soni Singh & Surya Pal Singh. (2015) THEORETICAL AND SIMULATION STUDIES ON WATER-LOADED METAL DIAGONAL HORN ANTENNA FOR HYPERTHERMIA APPLICATION. Progress In Electromagnetics Research C 58, pages 105-115.
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Soni Singh, Kranti Kumar Katare, Situ Rani Patre & S. P. Singh. (2013) Performance comparison of SAR distributions in phantom bio-medium due to TiO<inf>2</inf> loaded metal diagonal and square horn antennas. Performance comparison of SAR distributions in phantom bio-medium due to TiO<inf>2</inf> loaded metal diagonal and square horn antennas.
S. Singh, K. K. Katare & S. P. Singh. (2013) SAR distribution in a phantom bio-medium due to TiO<inf>2</inf> loaded metal diagonal horn. SAR distribution in a phantom bio-medium due to TiO<inf>2</inf> loaded metal diagonal horn.
T Drizdal, M M Paulides, M Linthorst & G C van Rhoon. (2012) Reconstruction of applicator positions from multiple-view images for accurate superficial hyperthermia treatment planning. Physics in Medicine and Biology 57:9, pages 2491-2503.
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Ki-Joon Kim, Woo-Cheol Choi, Jae-Hoon Choi & Young-Joong Yoon. (2012) Applicator of Hyperthermia with Compact Dipole Antenna Array. The Journal of Korean Institute of Electromagnetic Engineering and Science 23:2, pages 244-250.
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Marianne Linthorst, Tomas Drizdal, Hans Joosten, Gerard C. van Rhoon & Jacoba van der Zee. (2011) Procedure for creating a three-dimensional (3D) model for superficial hyperthermia treatment planningVerfahren zur Erstellung eines dreidimensionalen (3D) Patientenmodells für die Planung der Oberflächenhyperthermiebehandlung. Strahlentherapie und Onkologie 187:12, pages 835-841.
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Y. Birkelund, O. Klemetsen, S. K. Jacobsen, K. Arunachalam, P. Maccarini & P. R. Stauffer. (2011) Vesicoureteral Reflux in Children: A Phantom Study of Microwave Heating and Radiometric Thermometry of Pediatric Bladder. IEEE Transactions on Biomedical Engineering 58:11, pages 3269-3278.
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Paolo Togni, Jan Vrba & Luca Vannucci. (2009) Microwave applicator for hyperthermia treatment on in vivo melanoma model. Medical & Biological Engineering & Computing 48:3, pages 285-292.
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Xiaoyong Yang, Jianjun Du & Youjun Liu. (2005) Advances in Hyperthermia Technology. Advances in Hyperthermia Technology.
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J. van der Zee. (2002) Heating the patient: a promising approach?. Annals of Oncology 13:8, pages 1173-1184.
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J J W Lagendijk. (2000) Hyperthermia treatment planning. Physics in Medicine and Biology 45:5, pages R61-R76.
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G.C. Van Rhoon, P.J.M. Rietveld & T. Samaras. (2000) Effectiveness of FDTD in predicting SAR distributions from the lucite cone applicator. IEEE Transactions on Microwave Theory and Techniques 48:11, pages 2059-2063.
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S. Jacobsen, P.R. Stauffer & D.G. Neuman. (2000) Dual-mode antenna design for microwave heating and noninvasive thermometry of superficial tissue disease. IEEE Transactions on Biomedical Engineering 47:11, pages 1500-1509.
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J van der Zee, B van der Holt, P J M Rietveld, P A Helle, A J Wijnmaalen, W L J van Putten & G C van Rhoon. (1999) Reirradiation combined with hyperthermia in recurrent breast cancer results in a worthwhile local palliation. British Journal of Cancer 79:3-4, pages 483-490.
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Paul J.M Rietveld, Wim L.J van Putten, Jacoba van der Zee & Gerard C van Rhoon. (1999) Comparison of the clinical effectiveness of the 433 MHz lucite cone applicator with that of a conventional waveguide applicator in applications of superficial hyperthermia. International Journal of Radiation Oncology*Biology*Physics 43:3, pages 681-687.
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F. Rossetto & P.R. Staufer. (1999) Effect of complex bolus-tissue load configurations on SAR distributions from dual concentric conductor applicators. IEEE Transactions on Biomedical Engineering 46:11, pages 1310-1319.
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P J M Rietveld, M L D Lumori, J van der Zee & G C van Rhoon. (1998) Quantitative evaluation of arrays of Lucite cone applicators in flat layered phantoms using Gaussian-beam-predicted and thermographically measured SAR distributions. Physics in Medicine and Biology 43:8, pages 2207-2220.
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