A Deionized Water-Infilled Dual-Layer Insulator-Applied Brain-Implanted UWB Antenna for Wireless Biotelemetry Applications

Geonyeong Shin, Wonkyo Kim, Min Cheol Kim, Jusung Kim, Jae Young Chung, Junghyo Nah, Ick Jae Yoon

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

We propose a novel double-layered insulator configuration for a human-brain-implanted impulse radio ultra-wideband (IR-UWB) antenna. The dimension of the antenna is 10.0 × 11.0 ×0.954 mm3, including the dual-layer insulator. The insulator provides a dielectric loading effect of r 50 (lossless) for obtaining an improved radiating power and the broadband-impedance-matching characteristic in brain tissues. The outer layer is made of biocompatible 3-D printing material, and the inner insulator is filled with deionized water with r 80 and loss tangent (tan δ ) 0.25 at 4 GHz. A slotted UWB antenna with the proposed insulator is located between the emulated dura and CSF tissues inside the skull for brain signal detection. The design uses a multilayer phantom, mimicking the seven tissue layers of the brain. The impedance and radiation performance of the proposed antenna configuration are also discussed using the commercial high-precision human phantom model. The designed IR-UWB antenna shows a boresight radiation characteristic toward the top of the head with a proper high gain in the target frequency of 3-5 GHz. The computed expectations are verified experimentally. Furthermore, it is demonstrated that the UWB spectrum generated from a UWB radio-frequency (RF) transmitter can be transmitted stably using the proposed antenna as a transmitting antenna. In addition, the link budget of the system setup is analyzed. The improved gain characteristic of the antenna from the proposed dual-layer insulator can be utilized to retain the link margins while satisfying the UWB communication regulation and average specific absorption rate (SAR) limitation.

Original languageEnglish
Pages (from-to)6469-6478
Number of pages10
JournalIEEE Transactions on Antennas and Propagation
Volume70
Issue number8
DOIs
StatePublished - 1 Aug 2022

Bibliographical note

Publisher Copyright:
© 1963-2012 IEEE.

Keywords

  • Average specific absorption rate (SAR)
  • brain-implanted antenna
  • deionized water
  • impulse radio
  • multilayered phantom
  • slot antenna
  • ultra-wideband (UWB)

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