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Shielded microstrip array for 7T human MR imaging

  • Bing Wu
  • , Chunsheng Wang
  • , Douglas A.C. Kelley
  • , Duan Xu
  • , Daniel B. Vigneron
  • , Sarah J. Nelson
  • , Xiaoliang Zhang
  • University of California at San Francisco
  • GE Healthcare United States

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

The high-frequency transceiver array based on the microstrip transmission line design is a promising technique for ultrahigh field magnetic resonance imaging (MRI) signal excitation and reception. However, with the increase of radio-frequency (RF) channels, the size of the ground plane in each microstrip coil element is usually not sufficient to provide a perfect ground. Consequently, the transceiver array may suffer from cable resonance, lower Q-factors, and imaging quality degradations. In this paper, we present an approach to improving the performance of microstrip transceiver arrays by introducing RF shielding outside the microstrip array and the feeding coaxial cables. This improvement reduced interactions among cables, increased resonance stability, and Q-factors, and thus improved imaging quality. An experimental method was also introduced and utilized for quantitative measurement and evaluation of RF coil resonance stability or cable resonance behavior.

Original languageEnglish
Article number5282577
Pages (from-to)179-184
Number of pages6
JournalIEEE Transactions on Medical Imaging
Volume29
Issue number1
DOIs
StatePublished - Jan 2010

Keywords

  • Cable resonance
  • High field magnetic resonance imaging (MRI)
  • Microstrip transmission line resonator
  • Radio-frequency (RF) coil
  • RF shielding

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