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Articles

A Novel Design of Epidermal Flexible Antenna on Supraorbital Nerve to Correlate Diabetes and Anemia

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REFERENCES

  • Y. C. Chen, and Y. X. Du, “Development of high quality factor microwave ceramics for application in wireless high temperature patch antenna sensor,” J. Mater. Sci. Mater. Electron., Vol. 29, pp. 18432–40, 2018.
  • M. Adhvaryu, P. N. Patel, and C. D. Modhera, “Apertured EBG-based microwave patch antenna for characterization of corrosion in steel rebar of civil structures,” Sens. Imaging, Vol. 20, pp. 1–13, 2019.
  • S. H. Zainud-Deen, H. A. E. A. Malhat, and E. A. A. El-Refaay, “InSb based microstrip patch antenna temperature sensor for terahertz applications,” Wirel. Pers. Commun., Vol. 115, 2020.
  • S. H. Zainud-Deen, H. A. Malhat, and E. A. El-Refaay, “Polarization-independent reconfigurable graphene gas sensor using crescent plasmonic antenna,” Plasmonics., Vol. 15, pp. 1115–22, 2020.
  • M. Bunruangses, P. Youplao, I. S. Amiri, N. Pornsuwancharoen, and P. Yupapin, “Brain sensor and communication model using plasmonic microring antenna network,” Opt. Quantum Electron., Vol. 51, pp. 1–10, 2019.
  • Y. C. Chen, M. Z. Weng, Y. X. Du, and C. L. Hsiao, “Microwave dielectric properties of Nd(Ti0.5−xZrx)W0.5O4 ceramics for application in antenna temperaturesensor,” J. Mater. Sci. Mater. Electron., Vol. 29, pp. 4717–23, 2018.
  • B. Westbrook, A. Cukierman, A. Lee, A. Suzuki, C. Raum, and W. Holzapfel, “Development of the next generation of multi-chroic antenna-coupled transition edge sensor detectors for CMB polarimetry,” J. Low Temp. Phys., Vol. 184, pp. 74–81, 2016.
  • A. Massaro, F. Spano, and A. Athanassiou, “Modeling and innovative technology of optical 3D antenna sensors as micro rectangular apertures,” Opt. Quantum Electron., Vol. 44, pp. 213–8, 2012.
  • T. V. Padmavathy, D. S. Bhargava, P. Venkatesh, and N. Sivakumar, “Design and development of microstrip patch antenna with circular and rectangular slot for structural health monitoring,” Pers. Ubiquitous Comput., Vol. 22, pp. 883–93, 2018.
  • F. A. Cespedes, G. Mumcu, and S. E. Saddow, “Sic RF sensor for continuous glucose monitoring,” MRS Adv., Vol. 1, pp. 3691–6, 2016.
  • M. F. Kuhn, G. P. Breier, A. R. P. Dias, and T. G. R. Clarke, “A novel RFID-based strain sensor for wireless structural health monitoring,” J. Nondestruct. Eval., Vol. 37, no. 22, 2018.
  • N. H. Mohd Yunus, J. Sampe, J. Yunas, A. Pawi, and Z. A. Rhazali, “MEMS based antenna of energy harvester for wireless sensor node,” Microsyst. Technol., Vol. 26, pp. 2785–92, 2020.
  • X. Yao, L. Tong, and Y. Cui, “A planar inverted-F antenna-based chemical sensor for ion concentrations,” Sens. Actuators Reports, Vol. 2, pp. 100006, 2020.
  • D. Tang, et al., “Highly sensitive wearable sensor based on a flexible multi-layer graphene film antenna,” Sci. Bull., Vol. 63, pp. 574–9, 2018.
  • M. Uenoyama, et al., “Non-contact respiratory monitoring system using a ceiling-attached microwave antenna,” Med. Biol. Eng. Comput., Vol. 44, pp. 835–40, 2006.
  • L. Guangyu, L. Yanxin, H. Chen, and W. Deng, “Fractional-order controller for course-keeping of underactuated surface vessels based on frequency domain specification and improved particle swarm optimization algorithm,” Appl. Sci., Vol. 12, pp. 3139, 2022. DOI: 10.3390/app12063139.
  • X. Ran, X. Zhou, M. Lei, W. Tepsan, and W. Deng, “A novel K-means clustering algorithm with a noise algorithm for capturing urban hotspots,” Appl. Sci., Vol. 11, no. 23, pp. 11202, 2021. DOI: 10.3390/app112311202.
  • L. Zhang, J. Xu, Y. Liu, et al., “Particle swarm optimization algorithm with multi-strategies for delay scheduling,” Neural Process. Lett., 2022. DOI: 10.1007/s11063-022-10821-w.
  • W. Deng, X. Zhanga, Y. Zhou, Y. Liu, X. Zhou, H. Chen, and H. Zhao, “An enhanced fast non-dominated solution sorting genetic algorithm for multi-objective problems,” Inf. Sci., Vol. 585, pp. 441–53, 2022.
  • J. Kulkarni, C.-Y.-D. Sim, A. Poddar, U. L. Rohde, and A. G. Alharbi, “A compact circularly polarized rotated L-shaped antenna with J-shaped defected ground structure for WLAN and V2X applications,” Prog. Electromagnet. Res. Lett., Vol. 102, pp. 135–43, 2022.
  • J. Sharad Kulkarni, and C.-Y. Desmond Sim. “Low-Profile, Multiband & Wideband ‘C-Shaped’ Monopole Antenna for 5G and WLAN Applications,” in 2020 International Conference on Radar, Antenna, Microwave, Electronics, and Telecommunications (ICRAMET), 2020, pp. 366–71. DOI: 10.1109/ICRAMET51080.2020.9298569.
  • J. Kulkarni, C. Y. D. Sim, and A. Poddar, “Multi band inter connected C-shaped flexible antenna for mobile and fixed wireless communication systems,” in Optical and wireless technologies. OWT 2021. lecture notes in electrical engineering, Vol. 892, M. Tiwari, Y. Ismail, K. Verma, and A.K. Garg, Eds. Singapore: Springer. DOI: 10.1007/978-981-19-1645-8_34.
  • V. Kannagi, and A. Jawahar, “Epidermal antenna in palmar arch region for anaemia detection to avoid peripheral perfusion artifact in optical sensor during hemoglobin measurement,” Microsyst. Technol., Vol. 26, pp. 1427–35, 2020. DOI: 10.1007/s00542-019-04675-x.

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