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Research Article

Design and characterisation of miniaturised cavity-backed patch antenna for microwave hyperthermia

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Pages 737-748 | Received 16 Mar 2015, Accepted 30 Jun 2015, Published online: 12 Sep 2015

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Read on this site (2)

Sergio Curto, Aleix Garcia-Miquel, Minyoung Suh, Neus Vidal, Jose M. Lopez-Villegas & Punit Prakash. (2018) Design and characterisation of a phased antenna array for intact breast hyperthermia. International Journal of Hyperthermia 34:3, pages 250-260.
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Garron Deshazer, Punit Prakash, Derek Merck & Dieter Haemmerich. (2017) Experimental measurement of microwave ablation heating pattern and comparison to computer simulations. International Journal of Hyperthermia 33:1, pages 74-82.
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Articles from other publishers (25)

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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Shabeeb Ahamed KP, Joseph Prashanth Britto & Kavitha Arunachalam. (2023) Dual Band Coaxial Y-Monopole for Hyperthermia Treatment of Cervical Cancer Delivered Through an Intrauterine Tandem. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology 7:4, pages 375-382.
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Rahul Choudhary & Kavitha Arunachalam. (2022) Redesign of 434 MHz Cavity Backed Patch Antenna for Hyperthermia Treatment of Cancer. Redesign of 434 MHz Cavity Backed Patch Antenna for Hyperthermia Treatment of Cancer.
Jingjing Song, Xiaohan Sun, Yongxing Du, Qiong Wu, Meng Niu, Changhui Fu, Longfei Tan, Xiangling Ren, Lufeng Chen & Xianwei Meng. (2022) Micro-Opening Ridged Waveguide Tumor Hyperthermia Antenna Combined with Microwave-Sensitive MOF Material for Tumor Microwave Hyperthermia Therapy. ACS Applied Bio Materials 5:9, pages 4154-4164.
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K. P. Shabeeb Ahamed & Kavitha Arunachalam. (2022) Ferrite Sleeve as a Choke for Intracavitary Microwave Hyperthermia Treatment Using Coaxial Antennas. IEEE Transactions on Antennas and Propagation 70:9, pages 7745-7754.
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Rahul Choudhary & Kavitha Arunachalam. (2022) Design and comparison of semi-ellipsoidal and conical phased array applicators operating at 434 MHz for hyperthermia treatment of locally advanced breast cancer. Design and comparison of semi-ellipsoidal and conical phased array applicators operating at 434 MHz for hyperthermia treatment of locally advanced breast cancer.
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.
Jeslin P. Issac, Sathya Priya Sugumar & Kavitha Arunachalam. (2022) Self-Balanced Near-Field Microwave Radiometer for Passive Tissue Thermometry. IEEE Sensors Journal 22:7, pages 6544-6552.
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Tharrini Rajendran & Kavitha Arunachalam. (2021) Microwave intracavitary applicator using 434 MHz conformal patch antennas for hyperthermia treatment of gynaecological cancers. IET Microwaves, Antennas & Propagation 15:9, pages 1117-1126.
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Divya Baskaran & Kavitha Arunachalam. (2021) Design and Experimental Verification of 434 MHz Phased Array Applicator for Hyperthermia Treatment of Locally Advanced Breast Cancer. IEEE Transactions on Antennas and Propagation 69:3, pages 1706-1715.
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H. F. Guarnizo Mendez, M. A. Polochè Arango, T. A. Rubiano Suazo, S. H. Rojas Martínez & F. J. Gutiérrez Bernal. 2021. AETA 2019 - Recent Advances in Electrical Engineering and Related Sciences: Theory and Application. AETA 2019 - Recent Advances in Electrical Engineering and Related Sciences: Theory and Application 511 520 .
Divya Baskaran & Kavitha Arunachalam. (2020) Design of Site‐Specific Microwave Phased Array Hyperthermia Applicators Using 434 MHz Reduced Cavity‐Backed Patch Antenna. Bioelectromagnetics 41:8, pages 630-648.
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AliArshad Kothawala, Divya Baskaran, Kavitha Arunachalam & Arun K. Thittai. (2020) Regularized Kurtosis Imaging and its Comparison with Regularized Log Spectral Difference and Regularized Nakagami Imaging for Microwave Hyperthermia Hotspot Monitoring. Regularized Kurtosis Imaging and its Comparison with Regularized Log Spectral Difference and Regularized Nakagami Imaging for Microwave Hyperthermia Hotspot Monitoring.
Aliarshad Kothawala, Divya Baskaran, Kavitha Arunachalam & Arun K. Thittai. (2019) Regularized Nakagami Ultrasound Imaging for Microwave Hyperthermia monitoring. Regularized Nakagami Ultrasound Imaging for Microwave Hyperthermia monitoring.
H. F. Guarnizo Mendez, M. A. Poloche Arango, F. Coronel Rico & I. E. Diaz Pardo. (2019) Microwave Hyperthermia Study in Breast Cancer Treatment. Microwave Hyperthermia Study in Breast Cancer Treatment.
Vidyalakshmi M. Ravi, Amit K. Sharma & Kavitha Arunachalam. (2019) Pre‐Clinical Testing of Microwave Radiometer and a Pilot Study on the Screening Inflammation of Knee Joints. Bioelectromagnetics 40:6, pages 402-411.
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Ali Arshad Kothawala, Divya Baskaran, Kavitha Arunachalam & Arun K. Thittai. (2019) Ultrasound-Based Regularized Log Spectral Difference Method For Monitoring Microwave Hyperthermia. Ultrasound-Based Regularized Log Spectral Difference Method For Monitoring Microwave Hyperthermia.
Divya Baskaran & Kavitha Arunachalam. (2019) Computer simulations of 434 MHz Electromagnetic Phased Array for thermal therapy of locally advanced breast cancer. Computer simulations of 434 MHz Electromagnetic Phased Array for thermal therapy of locally advanced breast cancer.
H. F. Guarnizo Mendez, M. A. Polochè Arango, J. F. Coronel Rico & T. A. Rubiano Suazo. 2019. Applied Informatics. Applied Informatics 215 229 .
Hector Fabian Guarnizo Mendez, Mauricio Andrés Polochè Arango, John Jairo Pantoja Acosta, Juan Fernando Coronel Rico & Juan Sebastian Amaya Opayome. 2019. Applied Computer Sciences in Engineering. Applied Computer Sciences in Engineering 416 427 .
AliArshad Kothawala, Divya Baskaran, Kavitha Arunachalam & Arun K. Thittai. (2018) A time domain method to monitor temperature in microwave hyperthermia using ultrasound attenuation. A time domain method to monitor temperature in microwave hyperthermia using ultrasound attenuation.
Ionuț Tudorancea, Vlad Porumb, Alexandru Trandabăţ, Decebal Neaga, Bogdan Tamba, Radu Iliescu & Gabriel M. Dimofte. (2017) New experimental model for single liver lobe hyperthermia in small animals using non-directional microwaves. PLOS ONE 12:9, pages e0184810.
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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.
Crossref
Kwabena Kan-Dapaah, Nima Rahbar & Wole Soboyejo. (2017) Polymeric composite devices for localized treatment of early-stage breast cancer. PLOS ONE 12:2, pages e0172542.
Crossref
Geetha Chakaravarthi & Kavitha Arunachalam. (2016) Influence of dissolved gases in coupling waterbolus on superficial hyperthermia and evaluation of a water conditioning system with inline degassing. Biomedical Physics & Engineering Express 2:5, pages 055003.
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