Koreshin E.A., Efimtcev A.Y., Gulko A.M., Popov S.V., Orlov I.N., Trufanov G.E., Zubkov M.A. Design of a RF-resonant set improving locally the B1+ efficiency. Applications for clinical MRI in andrology and urology. Journal of Magnetic Resonance. 2020. Vol. 317. pp. 106774.
Popov I.Y., Dudin M.G., Pinchuk D., Minkin Y., Baloshin Y.A., Zubkov M., Pomortsev I., Bober S., Uzdennikova M., Larionov N.R. AIS: Etiology, Pathogenesis. Facts and Reflections. International Journal of Orthopaedics Research. 2020. Vol. 3. No. 2. pp. 51-63.
Zubkov M., Efimtcev A.Y., Trufanov G.E., Gulko A., Popov S., Orlov I., Slobozhanyuk A.P., Melchakova I.V. Diffusion tensor based forearm nerve tractography in 1.5 T MRI. Journal of Physics: Conference Series. 2020. Vol. 1461. No. 1. pp. 012202.
Koreshin E., Zubkov M. Cylindrical Resonators in Penile Magnetic Resonance Imaging: Solenoids versus Birdcage. AIP Conference Proceedings. 2020. Vol. 2300. pp. 020063.
Ivanov V.A., Hurshkainen A.A., Solomakha G.A., Zubkov M. RF-coil with variable resonant frequency for multiheteronuclear ultra-high field MRI. Photonics and Nanostructures - Fundamentals and Applications. 2020. Vol. 38. pp. 100747.
Koreshin E.A., Zubkov M., Glybovski S.B. RF-resonator for clinical MR imaging in urology and andrology. Journal of Physics: Conference Series. 2020. Vol. 1461. No. 1. pp. 012069.
Ivanov V.A., Hurshkainen A.A., Solomakha G.A., Zubkov M. Variable band RF-coil for multiheteronuclear MRI. Journal of Physics: Conference Series. 2019. pp. in press?.
Zubkov M.A., Andreychenko A.E., Kretov E.I., Solomakha G.A., Melchakova I.V., Fokin V.A., Simovski C.R., Belov P.A., Slobozhanyuk A.P. Ultrahigh field magnetic resonance imaging: new frontiers and possibilities in human imaging. Physics-Uspekhi. 2019. Vol. 62. No. 12. pp. 100-120.
RF-resonator for clinical MR imaging in urology and andrology
Compact and adjustable metasurface-based resonator for in-vivo MRI
Adjustable metasurface-based resonator for in-vivo MRI
Shchelokova A.V., van den Berg C., Dobrykh D.A., Glybovski S.B., Zubkov M.A., Brui E.A., Dmitriev D., Kozachenko A.V., Efimtcev A.Y., Sokolov A., Fokin V.A., Melchakova I.V., Belov P.A. Volumetric Wireless Coil Based on Periodically Coupled Split-Loop Resonators for Clinical Wrist Imaging. Magnetic Resonance in Medicine. 2018. Vol. 80. No. 4. pp. 1726-1737.
Brui E.A., Shchelokova A.V., Zubkov M.A., Melchakova I.V., Glybovski S.B., Slobozhanyuk A.P. Adjustable Subwavelength Metasurface-Inspired Resonator for Magnetic Resonance Imaging. Physica Status Solidi (A) Applications and Materials Science. 2018. Vol. 215. No. 5. pp. 1700788.
Stait-Gardner T., Torres A., Zubkov M., Willis S.A., Zheng G., Price W.S. Diffusion NMR: A Tool to Investigate the Dynamics of Organic Systems. Current Organic Chemistry. 2018. Vol. 22. No. 8. pp. 758-768.
Zubkov M.A., Hurshkainen A.A., Brui E.A., Glybovski S.B., Gulyaev M., Anisimov N., Volkov D., Pirogov Y., Melchakova I.V. Small animal large field of view magnetic resonance imaging with metamaterial-inspired resonator. Journal of Physics: Conference Series. 2018. Vol. 1092. No. 1. pp. 012180.
Zubkov M.A., Hurshkainen A.A., Brui E.A., Glybovski S.B., Gulyaev M., Anisimov N., Volkov D., Pirogov Y., Melchakova I.V. Small animal whole-body imaging with metamaterial-inspired RF coil. NMR in Biomedicine. 2018. Vol. 31. No. 8. pp. e3952.
Zubkov M., Stait-Gardner T., Price W.S. Low-bandwidth space/frequency component separation for quantitative imaging. Magnetic Resonance in Chemistry. 2017. Vol. 55. No. 2. pp. 137-144.
Shchelokova A.V., Dobrykh D.A., Slobozhanyuk A.P., Glybovski S.B., Zubkov M.A., Brui E.A., Melchakova I.V., Belov P.A. Metasurface-Based Wireless Coils for Magnetic Resonance Imaging. IEEE International Conference on Microwaves, Antennas, Communications and Electronic Systems, COMCAS 2017. 2017. pp. 217-219.
Zubkov M., Dennis G.R., Stait-Gardner T., Torres A.M., Willis S.A., Zheng G., Price W.S. Physical characterization using diffusion NMR spectroscopy. Magnetic Resonance in Chemistry. 2017. Vol. 55. No. 5. pp. 414-424.
Usage of Wire Metamaterial Resonators with distributed capacitive load for In-vivo Magnetic Resonance Imaging,
Российская Федерация, Санкт-Петербург