Short-T2 Imaging for Quantifying Concentration of Sodium (23Na) of Bi-Exponential T2 Relaxation
Identifieur interne : 002C96 ( Ncbi/Curation ); précédent : 002C95; suivant : 002C97Short-T2 Imaging for Quantifying Concentration of Sodium (23Na) of Bi-Exponential T2 Relaxation
Auteurs : Yongxian Qian [États-Unis] ; Ashok Panigrahy [États-Unis] ; Charles M. Laymon [États-Unis] ; Vincent K. Lee [États-Unis] ; Jan Drappatz [États-Unis] ; Frank S. Lieberman [États-Unis] ; Fernando E. Boada [États-Unis] ; James M. Mountz [États-Unis]Source :
- Magnetic resonance in medicine : official journal of the Society of Magnetic Resonance in Medicine / Society of Magnetic Resonance in Medicine [ 0740-3194 ] ; 2014.
Abstract
This work intends to demonstrate a new method for quantifying concentration of sodium (23Na) of bi-exponential T2 relaxation in patients on MRI scanners at 3.0 Tesla.
Two single-quantum (SQ) sodium images acquired at very-short and short echo times (TE=0.5 and 5.0ms) are subtracted to produce an image of the short-T2 component of the bi-exponential (or bound) sodium. An integrated calibration on the SQ and short-T2 images quantifies both total and bound sodium concentrations.
Numerical models were used to evaluate signal response of the proposed method to the short-T2 components. MRI scans on agar phantoms and brain tumor patients were performed to assess accuracy and performance of the proposed method, in comparison with a conventional method of triple-quantum filtering.
A good linear relation (R2=0.98) was attained between the short-T2 image intensity and concentration of bound sodium. A reduced total scan time of 22min was achieved under the SAR restriction for human studies in quantifying both total and bound sodium concentrations.
The proposed method is feasible for quantifying bound sodium concentration in routine clinical settings at 3.0 Tesla.
Url:
DOI: 10.1002/mrm.25393
PubMed: 25078966
PubMed Central: 4312273
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Imaging for Quantifying Concentration of Sodium (<sup>23</sup>
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Relaxation</title>
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Relaxation</title>
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<front><div type="abstract" xml:lang="en"><sec id="S1"><title>Purpose</title>
<p id="P1">This work intends to demonstrate a new method for quantifying concentration of sodium (<sup>23</sup>
Na) of bi-exponential T<sub>2</sub>
relaxation in patients on MRI scanners at 3.0 Tesla.</p>
</sec>
<sec id="S2"><title>Theory</title>
<p id="P2">Two single-quantum (SQ) sodium images acquired at very-short and short echo times (TE=0.5 and 5.0ms) are subtracted to produce an image of the short-T<sub>2</sub>
component of the bi-exponential (or bound) sodium. An integrated calibration on the SQ and short-T<sub>2</sub>
images quantifies both total and bound sodium concentrations.</p>
</sec>
<sec id="S3"><title>Methods</title>
<p id="P3">Numerical models were used to evaluate signal response of the proposed method to the short-T<sub>2</sub>
components. MRI scans on agar phantoms and brain tumor patients were performed to assess accuracy and performance of the proposed method, in comparison with a conventional method of triple-quantum filtering.</p>
</sec>
<sec id="S4"><title>Results</title>
<p id="P4">A good linear relation (R<sup>2</sup>
=0.98) was attained between the short-T<sub>2</sub>
image intensity and concentration of bound sodium. A reduced total scan time of 22min was achieved under the SAR restriction for human studies in quantifying both total and bound sodium concentrations.</p>
</sec>
<sec id="S5"><title>Conclusion</title>
<p id="P5">The proposed method is feasible for quantifying bound sodium concentration in routine clinical settings at 3.0 Tesla.</p>
</sec>
</div>
</front>
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