Development and Implementation of a PIN-Diode Controlled, Quadrature-Enhanced, Double-Tuned RF Coil for Sodium MRI.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29969413.
- Also identified by DOI 10.1109/TMI.2017.2786466.
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Abstract
Sodium (<sup>23</sup>Na) MRI provides complementary cellular and metabolic information. However, the intrinsic MR sensitivity of <sup>23</sup>Na is considerably lower compared with that of the proton, making it difficult to measure MR-detectable sodium signals. It is therefore important to maintain the signal-to-noise ratio (SNR) of the sodium signal as high as possible. Double-tuned coils are often employed in combinationwith a <sup>1</sup>H coil, providing structural images and B<sub>0</sub> shimming capability. The double-tuned coil design can be achieved with the use of two geometrically decoupled coils whose B<sub>1</sub> field directions are perpendicular to each other. This can be used to design quadrature-driven, single-nucleus coils to improve SNR, and additionally, this coil can also be utilized as a linear-driven double-resonant mode. Here, we have developed and evaluateda quadrature-enhanced, double-tuned coil. The novel coil uses PIN-diode switches, inserted only in the loop coil, to shift the resonance frequency between <sup>1</sup>H and <sup>23</sup>Na so that <sup>23</sup>Na signals can be acquired in quadrature and the capability of using <sup>1</sup>H function remains. Consequently, the <sup>23</sup>Na SNR values obtained with the double-tuned coil are nearly 33% and 17% higher in comparison with geometrically identical single-tuned coils. SNR plots also show the superiority of double-tuned coil in <sup>23</sup>Na.
Medical subject headings
- Magnetic Resonance Imaging