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A dual-tuned quadrature volume coil with mixed λ/2 and λ/4 microstrip resonators for multinuclear MRSI at 7 T

  • Yong Pang
  • , Zhentian Xie
  • , Duan Xu
  • , Douglas A. Kelley
  • , Sarah J. Nelson
  • , Daniel B. Vigneron
  • , Xiaoliang Zhang
  • University of California at San Francisco
  • GE Healthcare United States

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

In this work, an eight-element by eight-element dual-tuned quadrature volume coil with a mix of capacitor terminated half-wavelength (λ/2) and quarter-wavelength (λ/4) microstrip resonators is proposed for multinuclear magnetic resonance imaging/spectroscopy studies at 7 T. In the proton channel, λ/2 microstrip resonators with capacitive terminations on both ends are employed for operation at higher frequency of 298.1 MHz; in the heteronucleus channel, capacitor-terminated λ/4 resonators, suitable for low frequency operations, are used to meet the low frequency requirement. This mixed structure design is particularly advantageous for high field heteronuclei magnetic resonance applications with large difference in Larmor frequency of the nuclei in question. The proposed design method makes it much easier to perform frequency tuning for heteronucleus channel using a variable capacitor with a practical capacitance range. As an example, a dual-tuned volume coil for 1H/ 13C mouse spectroscopic imaging was proposed to demonstrate the feasibility of this method. The finite-difference time-domain method is first used to model this dual-tuned volume coil and calculate the B 1 field distributions at two frequencies. Transmission parameters (S 21) measured between the proton channel and the carbon channel are -50 dB at 75 MHz and -35 dB at 298 MHz, showing the excellent isolation between the two channels at 7 T. The proton image and 13C FIDCSI image of a corn oil phantom on the axial plane at 7 T demonstrate the feasibility of the proposed method. A preliminary proton image of a mouse on the sagittal plane is also acquired using the proposed dual-tuned volume coil at 7 T, illustrating a fairly uniform B 1 field and sufficient image coverage for imaging in mice.

Original languageEnglish
Pages (from-to)290-298
Number of pages9
JournalMagnetic Resonance Imaging
Volume30
Issue number2
DOIs
StatePublished - Feb 2012

Keywords

  • 7 T
  • Dual-tuned
  • Microstrip
  • Mouse imaging
  • MRI/S
  • Volume coil

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