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Articles

Design of wearable textile antenna for low back radiation

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Pages 235-245 | Received 10 Sep 2019, Accepted 24 Nov 2019, Published online: 06 Dec 2019

References

  • Johansson AJ, Wave-propagation from medical implants-influence of body shape on radiation pattern. Proceedings of the 2nd Joint EMBS/BMES Conference; 2002 Oct 23-26; Houston, USA: IEEE; p. 1409–1410.
  • Ntouni GD, Lioumpas AS, Nikita KS. Reliable and energy-efficient communications for wireless biomedical implant systems. IEEE J Biomed Health Inform 2014;18(6):1848–1856. doi: 10.1109/JBHI.2014.2300151
  • Gabriel S, Lau RW, Gabriel C. The dielectric properties of biological tissues: III parametric models for the dielectric spectrum of tissues. Phys Med Biol 1996;41:2271–2293. doi: 10.1088/0031-9155/41/11/003
  • Body Tissue Dielectric Parameters Tool. Available from: http://www.fcc.gov/encyclopedia/body-tissue-dielectric-parameters
  • IEEE recommended practice for measurements and computations of radio frequency electromagnetic fields with respect to human exposure to such fields, 100 kHz 300 GHz, IEEE Std C95.3-2002, No. 4, p. 1–126, IEEE-SA Standards Board; 2002.
  • Robinson MP, Melia GCR, Flintoft DI, et al. Absorption cross-section of the human body measured at 1-15 GHz in a reverberant environment correlation with body dimensions. Currently unpublished, under submission to Bioelectromagnetics.
  • Balanis CA. Antenna theory: analysis and design. New York, NY: Wiley; 1997.
  • Varshini KT, Rao R. Investigations on SAR and thermal effects of a body wearable microstrip antenna. New York: Springer; 2017.
  • Jiang ZH, Brocker DE, Sieber PE, et al. A compact low-profile metasurface- enabled antenna for wearable medical Body-Area Network devices. IEEE Trans Antennas Propag 2014;62:4021–4030. doi: 10.1109/TAP.2014.2327650
  • Hu B, Gao GP, He LL, et al. Bending and on-arm effects on a wearable antenna for 2.45 GHz Body Area Network. IEEE Antennas Wireless Propag Lett 2016;15:378–338. doi: 10.1109/LAWP.2015.2446512
  • Lajevardi ME, Kamyab M. Ultraminiaturized metamaterial-inspired SIW textile antenna for off-body applications. IEEE Antennas Wireless Propag Lett 2017;16:3155–3158. doi: 10.1109/LAWP.2017.2766201
  • Ferreira D, Pires P, Rodrigues R, et al. Wearable textile antennas: examining the effect of bending on their performance. IEEE Antennas Propag Mag 2017;59:54–59. doi: 10.1109/MAP.2017.2686093
  • Ashyap AYI, Zuhairiah ZA, Samsul HD, et al. Compact and low-profile textile EBG-based antenna for wearable medical applications. IEEE Antennas Wireless Propag Lett 2017;16:2550–2553. doi: 10.1109/LAWP.2017.2732355
  • Ashyap AYI, et al. Inverted e-shaped wearable textile antenna for medical applications. IEEE Access 2018;6:35214–35222. doi: 10.1109/ACCESS.2018.2847280
  • Yan S, Soh PJ, Vandenbosch GA. Compact all-textile dual-band antenna loaded with metamaterial-inspired structure. IEEE Antennas Wireless Propag Lett 2015;14:1486–1489. doi: 10.1109/LAWP.2014.2370254

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