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ARTICLES

Compact conformal metasurface antenna for hyperthermia applications

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Pages 950-965 | Received 07 Jul 2022, Accepted 06 May 2023, Published online: 26 May 2023

References

  • Giombini A, Giovannini V, Di Cesare A, et al. Hyperthermia induced by microwave diathermy in the management of muscle and tendon injuries. Br Med Bull. 2007;83:379–396.
  • Johnson CC, Guy AW. Nonionizing electromagnetic wave effects in biological materials and systems. Proc. IEEE. 1972;60(6):692–718.
  • Bahl IJ, Stuchly SS, Stuchly MA. A new microstrip radiator for medical applications. IEEE Trans Microw Theory Tech. 1980;28:1464–1469.
  • Bahl IJ, Stuchly SS, Stuchly MA, et al. Microstrip loop radiators for medical applications. IEEE Trans Microw Theory Tech. 1982;30:1090–1093.
  • Montecchia F. Microstrip-antenna design for hyperthermia treatment of superficial tumors. IEEE Trans Biomed Eng. 1992;39:580–588.
  • Stauffer PR, Rossetto F, Leoncini M, et al. Radiation patterns of dual concentric conductor microstrip antennas for superficial hyperthermia. IEEE Trans Biomed Eng. 1998;45(5):605–613.
  • Jacobsen S, Stauffer PR, Neuman DG. Dual-mode antenna design for microwave heating and noninvasive thermometry of superficial tissue disease. IEEE Trans Biomed Eng. 2000;47(11):1500–1509.
  • Curto S, McEvoy P, Bao X, et al. Compact patch antenna for electromagnetic interaction with human tissue at 434 MHz. IEEE Trans Antennas Propag. 2009;57(9):2564–2571.
  • Bahl IJ, Stuchly SS, Stuchly MA. New microstrip slot radiator for medical applications. Electron Lett. 1980;16:731–732.
  • Koo YS, Kazemi R, Liu Q, et al. Development of a high SAR conformal antenna for hyperthermia tumors treatment. IEEE Trans Antennas Propag. 2014;62(11):5830–5840.
  • Singh S, Sahu B, Singh SP. Conformal microstrip slot antenna with an AMC reflector for hyperthermia. J Electromagn Waves Appl. 2016;30(12):1603–1619.
  • Smith DR, Padilla WJ, Vier DC, et al. Composite medium with simultaneously negative permeability and permittivity. Phys Rev Lett. 2000;84:4184–4187.
  • Wang G, Gong Y. Metamaterial lens applicator for microwave hyperthermia of breast cancer. Int J Hyperthermia. 2009;25(6):434–445.
  • Vrba D, Rodrigues D, Vrba J, et al. Metamaterial antenna arrays for improved uniformity of microwave hyperthermia treatments. Prog Electromagn Res. 2016;156:1–12.
  • Leggio L, de Varona O, Dadrasnia E. A comparison between different schemes of microwave cancer hyperthermia treatment by means of left-handed metamaterial lenses. Prog Electromagn Res. 2015;150:73–87.
  • Konstantinidis K, Feresidis AP. Hall PS broadband subwavelength profile high-gain antennas based on multi-layer metasurfaces. IEEE Trans Antennas Propag. 2015;63(1):423–427.
  • Liu W, Chen ZN, Qing XM. Metamaterial-based low-profile broadband mushroom antenna. IEEE Trans Antennas Propag. 2014;62(3):1165–1172.
  • Lin FH, Chen ZN. Low-profile wideband metasurface antennas using characteristic mode analysis. IEEE Trans Antennas Propag. 2017;65(4):1706–1713.
  • Liu WEI, Chen ZN, Qing X, et al. Miniaturized wideband metasurface antennas. IEEE Trans Antennas Propag. 2017;65(12):7345–7349.
  • Wang J, Wong H, Ji Z, et al. Broadband CPW-fed aperture coupled metasurface antenna. IEEE Antennas Wirel Propag Lett. 2019;18(3):517–520.
  • Gelvich EA, Mazokhin VN. Contact flexible microstrip applicators (CFMA) in a range from microwaves up to short waves. IEEE Trans Biomed Eng. 2002;49:1015–1023.
  • Correia D, Kok HP, De Greef M, et al. Body conformal antennas for superficial hyperthermia: the impact of bending contact flexible microstrip applicators on their electromagnetic behavior. IEEE Trans Biomed Eng. 2009;56:2917–2926.
  • Juang T, Neuman D, Schlorff J, et al. Construction of a conformal water bolus vest applicator for hyperthermia treatment of superficial skin cancer. The 26th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. 2004;2:3467–3470.
  • Computer Simulation Technology (CST). Available from: http://www.cst.com.
  • Stuchly MA, Stuchly SS. Dielectric properties of biological substances-Tabulated. J Microw Power. 1980;15:19–26.
  • Singh S, Singh SP. Water-loaded metal diagonal horn applicator for hyperthermia. IET Microwave Ant. Propag. 2015;9:814–821.
  • Gong Y, Wang G. Superficial tumor hyperthermia with flat left-handed metamaterial lens. Prog Electromagn Res. 2009;98:389–405.
  • Nikawa Y, Watanabe H, Kikuchi M, et al. A direct-contact microwave lens applicator with a microcomputer-controlled heating system for local hyperthermia. IEEE Trans Microw Theory Tech. 1986;34:626–630.

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