Increased flow rate of hyperpolarized aqueous solution for dynamic nuclear polarization-enhanced magnetic resonance imaging achieved by an open Fabry–Pérot type microwave resonator
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Published:2020-11-18
Issue:2
Volume:1
Page:275-284
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ISSN:2699-0016
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Container-title:Magnetic Resonance
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language:en
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Short-container-title:Magn. Reson.
Author:
Fedotov Alexey, Kurakin Ilya, Fischer Sebastian, Vogl Thomas, Prisner Thomas F.ORCID, Denysenkov Vasyl
Abstract
Abstract. A continuous flow dynamic nuclear polarization (DNP) employing the Overhauser effect at ambient temperatures can be used among other methods to increase sensitivity of magnetic resonance imaging (MRI). The hyperpolarized
state of water protons can be achieved by flowing aqueous liquid through a
microwave resonator placed directly in the bore of a 1.5 T MRI magnet. Here
we describe a new open Fabry–Pérot resonator as DNP polarizer, which exhibits a larger microwave exposure volume for the flowing liquid in
comparison with a cylindrical TE013 microwave cavity. The
Fabry–Pérot resonator geometry was designed using quasi-optical theory and simulated by CST software. Performance of the new polarizer was tested
by MRI DNP experiments on a TEMPOL aqueous solution using a blood-vessel
phantom. The Fabry–Pérot resonator revealed a 2-fold larger DNP enhancement with a 4-fold increased flow rate compared to the cylindrical
microwave resonator. This increased yield of hyperpolarized liquid allows
MRI applications on larger target objects.
Funder
Ministry of Education and Science of the Russian Federation
Publisher
Copernicus GmbH
Reference46 articles.
1. Albert, M. S. and Balamore, D.: Development of hyperpolarized noble gas
MRI, Nucl. Instrum. Methods, A402, 441–453,
https://doi.org/10.1016/S0168-9002(97)00888-7, 1998. 2. Andryieuski, A., Kuznetsova, S. M., Zhukovsky, S. V., Kivshar, Y. S., and
Lavrinenko, A. V.: Water: promising opportunities for tunable all-dielectric
electromagnetic metamaterials, Sci. Rep., 5, 13535,
https://doi.org/10.1038/srep13535, 2015. 3. Ardenkjaer-Larsen, J. H., Laustsen, C., Bowen, S., and Rizi, R.:
Hyperpolarized H2O angiography, Magn. Reson. Med., 71, 50–56,
https://doi.org/10.1002/mrm.25033, 2014. 4. Barnes, J. P. and Freed, J. H.: Aqueous sample holders for high-frequency
electron spin resonance, Rev. Sci. Instrum., 68, 2838–2846,
https://doi.org/10.1063/1.1148205, 1997. 5. Belousov, V., Denisov, G., and Chirkov, A.: Calculation and
parameter-control methods of eigenmodes of the simplest two-mirror
resonators, Izv. Vuzov, Radiophys., 8, 738–746,
https://doi.org/10.1023/A:1004869622320, 2000.
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