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A Miniaturized Novel-Shape Dual-Band Antenna for Implantable Applications

IEEE transactions on antennas and propagation, v.67 no.2, 2019년, pp.774 - 783  

Faisal, Farooq (Department of Telecommunication Engineering, University of Engineering and Technology, Taxila, Pakistan) ,  Yoo, Hyoungsuk (Department of Biomedical Engineering, Hanyang University, Seoul, South Korea)

Abstract AI-Helper 아이콘AI-Helper

In this paper, a miniaturized novel-shape dual-band implantable antenna operating in the industrial, scientific, and medical bands (902–928 MHz and 2.4–2.4835 GHz) is developed for battery-powered implants. The Rogers ULTRALAM ( $\varepsilon _{r} =2.9$ and tan $\delta =...

참고문헌 (48)

  1. Li-Jie Xu, Yong-Xin Guo, Wen Wu. Miniaturized Dual-Band Antenna for Implantable Wireless Communications. IEEE antennas and wireless propagation letters, vol.13, 1160-1163.

  2. Fu-Jhuan Huang, Chien-Ming Lee, Chia-Lin Chang, Liang-Kai Chen, Tzong-Chee Yo, Ching-Hsing Luo. Rectenna Application of Miniaturized Implantable Antenna Design for Triple-Band Biotelemetry Communication. IEEE transactions on antennas and propagation, vol.59, no.7, 2646-2653.

  3. Kiourti, Asimina, Nikita, Konstantina S.. A Review of Implantable Patch Antennas for Biomedical Telemetry: Challenges and Solutions [Wireless Corner]. IEEE antennas and propagation magazine, vol.54, no.3, 210-228.

  4. Sci Rep Highly stretchable and shape-controllable three-dimensional antenna fabricated by ‘cut-transfer-release’ method yan 2017 7 

  5. Bao, Jian-Zhong, Lu, Shin-Tsu, Hurt, W.D.. Complex dielectric measurements and analysis of brain tissues in the radio and microwave frequencies. IEEE transactions on microwave theory and techniques, vol.45, no.10, 1730-1741.

  6. Proc Int Conf Wireless Mobile Commun Healthcare Design of a novel miniaturized implantable PIFA for biomedical telemetry kiourti 2010 127 

  7. 10.1109/MWSYM.2016.7540252 

  8. Liu, Wen-Chung, Chen, Ssu-Hung, Wu, Chao-Ming. Bandwidth enhancement and size reduction of an implantable PIFA antenna for biotelemetry devices. Microwave and optical technology letters, vol.51, no.3, 755-757.

  9. 10.1109/APS.2011.5996726 

  10. Zhu Duan, Yong-Xin Guo, Minkyu Je, Dim-Lee Kwong. Design and in Vitro Test of a Differentially Fed Dual-Band Implantable Antenna Operating at MICS and ISM Bands. IEEE transactions on antennas and propagation, vol.62, no.5, 2430-2439.

  11. Li, Hua, Guo, Yong-Xin, Xiao, Shao-Qiu. Broadband circularly polarised implantable antenna for biomedical applications. Electronics letters, vol.52, no.7, 504-506.

  12. Bakogianni, Sofia, Koulouridis, Stavros. An Implantable Planar Dipole Antenna for Wireless MedRadio-Band Biotelemetry Devices. IEEE antennas and wireless propagation letters, vol.15, 234-237.

  13. Gani, Imran, Hyoungsuk Yoo. Multi-Band Antenna System for Skin Implant. IEEE microwave and wireless components letters : a publication of the IEEE Microwave Theory and Techniques Society, vol.26, no.4, 294-296.

  14. Karacolak, T., Hood, A.Z., Topsakal, E.. Design of a Dual-Band Implantable Antenna and Development of Skin Mimicking Gels for Continuous Glucose Monitoring. IEEE transactions on microwave theory and techniques, vol.56, no.4, 1001-1008.

  15. Cho, Y., Yoo, H.. Miniaturised dual-band implantable antenna for wireless biotelemetry. Electronics letters, vol.52, no.12, 1005-1007.

  16. Liu, Xiong Ying, Wu, Ze Tao, Fan, Yi, Tentzeris, Emmanouil M.. A Miniaturized CSRR Loaded Wide-Beamwidth Circularly Polarized Implantable Antenna for Subcutaneous Real-Time Glucose Monitoring. IEEE antennas and wireless propagation letters, vol.16, 577-580.

  17. Kod, Muayad, Zhou, Jiafeng, Huang, Yi, Stanley, Manoj, Hussein, Muaad Naser, Pour Sohrab, Abed, Alrawashdeh, Rula, Wang, Guozheng. Feasibility Study of Using the Housing Cases of Implantable Devices as Antennas. IEEE access : practical research, open solutions, vol.4, 6939-6949.

  18. Changrong Liu, Yong-Xin Guo, Shaoqiu Xiao. Circularly Polarized Helical Antenna for ISM-Band Ingestible Capsule Endoscope Systems. IEEE transactions on antennas and propagation, vol.62, no.12, 6027-6039.

  19. Kiourti, A., Nikita, K. S.. Miniature Scalp-Implantable Antennas for Telemetry in the MICS and ISM Bands: Design, Safety Considerations and Link Budget Analysis. IEEE transactions on antennas and propagation, vol.60, no.8, 3568-3575.

  20. Changrong Liu, Yong-Xin Guo, Shaoqiu Xiao. Capacitively Loaded Circularly Polarized Implantable Patch Antenna for ISM Band Biomedical Applications. IEEE transactions on antennas and propagation, vol.62, no.5, 2407-2417.

  21. Karacolak, Tutku, Cooper, Robert, Butler, James, Fisher, Stephen, Topsakal, Erdem. In Vivo Verification of Implantable Antennas Using Rats as Model Animals. IEEE antennas and wireless propagation letters, vol.9, 334-337.

  22. ITIS Database for Thermal and Electromagnetic Parameters of Biological Tissues Version 2 4 hasgall 2015 

  23. 10.1002/9781118893715.ch8 

  24. Liu, Yijun, Chen, Yifan, Lin, Haili, Juwono, Filbert H.. A Novel Differentially Fed Compact Dual-Band Implantable Antenna for Biotelemetry Applications. IEEE antennas and wireless propagation letters, vol.15, 1791-1794.

  25. Rahman, Ashiqur, Islam, Mohammad Tariqul, Singh, Mandeep Jit, Kibria, Salehin, Akhtaruzzaman, Md.. Electromagnetic Performances Analysis of an Ultra-wideband and Flexible Material Antenna in Microwave Breast Imaging: To Implement A Wearable Medical Bra. Scientific reports, vol.6, 38906-.

  26. Kim, Jaehoon, Rahmat-Samii, Y.. Implanted antennas inside a human body: simulations, designs, and characterizations. IEEE transactions on microwave theory and techniques, vol.52, no.8, 1934-1943.

  27. Shah, Syed Ahson Ali, Yoo, Hyoungsuk. Scalp-Implantable Antenna Systems for Intracranial Pressure Monitoring. IEEE transactions on antennas and propagation, vol.66, no.4, 2170-2173.

  28. Kiourti, Asimina, Psathas, Konstantinos A., Nikita, Konstantina S.. Implantable and ingestible medical devices with wireless telemetry functionalities: A review of current status and challenges. BioElectroMagnetics, vol.35, no.1, 1-15.

  29. Liu, Changrong, Zhang, Yudi, Liu, Xueguan. Circularly Polarized Implantable Antenna for 915 MHz ISM-Band Far-Field Wireless Power Transmission. IEEE antennas and wireless propagation letters, vol.17, no.3, 373-376.

  30. Soontornpipit, P., Furse, C.M., Chung, You Chung. Design of implantable microstrip antenna for communication with medical implants. IEEE transactions on microwave theory and techniques, vol.52, no.8, 1944-1951.

  31. Shi-Min Huang, Tofighi, Mohammad-Reza, Rosen, Arye. Considerations for the Design and Placement of Implantable Annular Slot Antennas for Intracranial Pressure Monitoring Devices. IEEE antennas and wireless propagation letters, vol.14, 1514-1517.

  32. Zhang, Ke, Liu, Changrong, Liu, Xueguan, Guo, Huiping, Yang, Xinmi. Miniaturized Circularly Polarized Implantable Antenna for ISM-Band Biomedical Devices. International journal of antennas and propagation, vol.2017, 1-9.

  33. Chandra, Rohit, Johansson, Anders J.. A Link Loss Model for the On-Body Propagation Channel for Binaural Hearing Aids. IEEE transactions on antennas and propagation, vol.61, no.12, 6180-6190.

  34. Wireless communication with medical implants: Antennas and propagation johansson 2004 

  35. Das, Rupam, Yoo, Hyoungsuk. A Multiband Antenna Associating Wireless Monitoring and Nonleaky Wireless Power Transfer System for Biomedical Implants. IEEE transactions on microwave theory and techniques, vol.65, no.7, 2485-2495.

  36. Radio Regulations 0 

  37. Das, Rupam, Yoo, Hyoungsuk. A Wideband Circularly Polarized Conformal Endoscopic Antenna System for High-Speed Data Transfer. IEEE transactions on antennas and propagation, vol.65, no.6, 2816-2826.

  38. Khoo, C.G.L., Brox, B., Norrhede, R., Maurer, F.H.J.. Effect of copper lamination on the rheological and copper adhesion properties of a thermotropic liquid crystalline polymer used in PCB applications. IEEE transactions on components, packaging, and manufacturing technology Part C, Manufacturing, vol.20, no.3, 219-226.

  39. Ciuti, Gastone, Menciassi, Arianna, Dario, Paolo. Capsule Endoscopy: From Current Achievements to Open Challenges. IEEE reviews in biomedical engineering, vol.4, 59-72.

  40. 2014 

  41. Hua Li, Yong-Xin Guo, Changrong Liu, Shaoqiu Xiao, Lin Li. A Miniature-Implantable Antenna for MedRadio-Band Biomedical Telemetry. IEEE antennas and wireless propagation letters, vol.14, 1176-1179.

  42. Hussain, Niamat, Kedze, Kam Eucharist, Park, Ikmo. Performance of a Planar Leaky-Wave Slit Antenna for Different Values of Substrate Thickness. Journal of electromagnetic engineering and science : JEES, vol.17, no.4, 202-207.

  43. Ho-Yu Lin, Takahashi, M., Saito, K., Ito, K.. Performance of Implantable Folded Dipole Antenna for In-Body Wireless Communication. IEEE transactions on antennas and propagation, vol.61, no.3, 1363-1370.

  44. 10.1109/ECTC.1995.515331 

  45. 10.1080/03772063.2016.1261049 

  46. 10.1109/NANOMED.2013.6766317 

  47. Islam, Md Shahidul, Esselle, Karu P., Bull, David, Pilowsky, Paul M.. Converting a Wireless Biotelemetry System to an Implantable System Through Antenna Redesign. IEEE transactions on microwave theory and techniques, vol.62, no.9, 1890-1897.

  48. 10.1109/SENSET.2017.8125046 

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