Double-Tuned Surface 1H–23Na Radio Frequency Coils at 7 T: Comparison of Three Decoupling Methods


如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

Magnetic Resonance Imaging (MRI) and Spectroscopy (MRS) with nuclei other than protons (X-nuclei) often require the acquisition of proton signal for shimming and co-registration procedures. Double-Tuned Radio Frequency (DT-RF) coils improve these procedures, avoiding the need for movement and repositioning of the subject during the examination. The drawback of DT-RF coils is basically the coupling between the two resonant structures, which increases signal losses leading to a degradation of the final MR image. To improve MR signal quality acquired via DT-RF coils, a suitable decoupling strategy should be implemented. For this purpose, three DT-RF coil prototypes, which differed only in the decoupling method, were built and their performances were compared through workbench measurements. Each prototype consisted of two concentric loops. The inner and outer loops were tuned at sodium (≈ 79 MHz) and proton (≈ 300 MHz) Larmor frequency at 7 Tesla, respectively. Active and passive decoupling designs were compared measuring the Q factor and the S21 parameter for each prototype. Active decoupling was tested as an alternative to the standard passive decoupling with a trap circuit, in which a non-negligible amount of current flows at resonance, perturbing the magnetic field responsible for producing the MR image. Workbench measurements showed satisfactory Q factors and S21 for both active and passive decoupling cases. Thus, active decoupling could be a promising alternative to achieve better MR signal quality. Furthermore, for active decoupling, two circuit elements were examined: PIN diodes and micro-electromechanical system (MEMS) switches.

作者简介

Francesca Maggiorelli

Department of Physical Sciences Earth and Environment, University of Siena; National Institute for Nuclear Physics; Imago7 Foundation, IRCCS Stella Maris

编辑信件的主要联系方式.
Email: francesca.maggiorelli@pi.infn.it
ORCID iD: 0000-0002-0660-8047
意大利, No 56, Via Roma, Siena, 53100; Pisa Division, Pisa, 56127; Pisa, 56128

Eddy Boskamp

GE Healthcare

Email: francesca.maggiorelli@pi.infn.it
美国, Aurora, OH, 44202

Gianluigi Tiberi

Imago7 Foundation, IRCCS Stella Maris

Email: francesca.maggiorelli@pi.infn.it
意大利, Pisa, 56128

Alessandra Retico

National Institute for Nuclear Physics

Email: francesca.maggiorelli@pi.infn.it
意大利, Pisa Division, Pisa, 56127

Mark Symms

Imago7 Foundation, IRCCS Stella Maris

Email: francesca.maggiorelli@pi.infn.it
意大利, Pisa, 56128

Michela Tosetti

Imago7 Foundation, IRCCS Stella Maris

Email: francesca.maggiorelli@pi.infn.it
意大利, Pisa, 56128

Fraser Robb

GE Healthcare

Email: francesca.maggiorelli@pi.infn.it
美国, Aurora, OH, 44202

补充文件

附件文件
动作
1. JATS XML

版权所有 © Springer-Verlag GmbH Austria, part of Springer Nature, 2019