<?xml version="1.0"?>
<response><item key="0"><nothing>Viktor Puchnin, Leila Sharipova, Debabrata Sikdar, Irina Melchakova, Alena Shchelokova, "Demonstration of a Subwavelength Radiofrequency Resonator for Infant Brain Imaging at 1.5 T", 2025 Antennas Design and Measurement International Conference (ADMInC), pp. 28-31, 2026, [DOI: 10.1109/adminc68550.2025.11325134] </nothing></item><item key="1"><nothing>Aleksandr Fedotov, Pavel Tikhonov, Viktor Puchnin, Ekaterina Brui, Anatolii Levchuk, Ayshat Karavaeva, Alena Shchelokova, Georgiy Solomakha, Anna Hurshkainen, "A concept of volume wireless receive-only coil for 1.5T MRI", Journal of Magnetic Resonance, vol. 374, pp. 107841, 2025, [DOI: 10.1016/j.jmr.2025.107841] [IF: 2.23, SJR: 0.78]</nothing></item><item key="2"><nothing>Vladislav Koloskov, Viktor Puchnin, Evgeniy Koreshin, Anna Kalugina, Wyger M. Brink, Polina Kozlova, Irina Mashchenko, Alena Shchelokova, "Improved Fetal Magnetic Resonance Imaging Using a Flexible Metasurface", NMR in Biomedicine, vol. 38, 2025, [DOI: 10.1002/nbm.70016] [IF: 4.04, SJR: 1.28]</nothing></item><item key="3"><nothing>Sergey Geyman, Viktor Puchnin, Alexey Slobozhanyuk, Mikhail Rybin, Alena Shchelokova, "Quasi-BIC realized in a subwavelength volumetric split ring-based resonator", Applied Physics Letters, vol. 125, 2024, [DOI: 10.1063/5.0237363] [IF: 3.97, SJR: 1.04]</nothing></item><item key="4"><nothing>Aigerim Jandaliyeva, Viktor Puchnin, Alena Shchelokova, "Volumetric wireless coils for breast MRI: A comparative analysis of metamaterial-inspired coil, Helmholtz coil, ceramic coil, and solenoid", Journal of Magnetic Resonance, vol. 359, pp. 107627, 2024, [DOI: 10.1016/j.jmr.2024.107627] [IF: 2.73, SJR: 0.82]</nothing></item><item key="5"><nothing>Viktor Puchnin, Olga Matvievskaia, Alexey Slobozhanyuk, Alena Shchelokova, Nikita Olekhno, "Application of Topological Edge States in Magnetic Resonance Imaging", Physical Review Applied, vol. 20, 2023, [DOI: 10.1103/physrevapplied.20.024076] [IF: 4.99, SJR: 1.88]</nothing></item><item key="6"><nothing>Aleksandr Fedotov, Pavel Tikhonov, Georgiy Solomakha, Viktor Puchnin, Alena Shchelokova, Anna Hurshkainen, "A wireless unilateral Rx-only RF coil for dedicated MRI of a human breast at 1.5 T", ISMRM 2023, 2023, </nothing></item><item key="7"><nothing>M.V. Lukin, E.A. Brui, &#x410;&#x43D;&#x430;&#x442;&#x43E;&#x43B;&#x438;&#x439; &#x41B;&#x435;&#x432;&#x447;&#x443;&#x43A;, A.A. Borshevetskaya, &#x412;&#x438;&#x43A;&#x442;&#x43E;&#x440; &#x41F;&#x443;&#x447;&#x43D;&#x438;&#x43D;, &#x410;&#x43B;&#x451;&#x43D;&#x430; &#x429;&#x435;&#x43B;&#x43E;&#x43A;&#x43E;&#x432;&#x430;, N.A. Anokhina, L.E. Galyautdinova, V.S. Egorova, K.S. Anpilogova, "&#x418;&#x43D;&#x43D;&#x43E;&#x432;&#x430;&#x446;&#x438;&#x43E;&#x43D;&#x43D;&#x44B;&#x439; &#x43F;&#x43E;&#x434;&#x445;&#x43E;&#x434; &#x43A; &#x43C;&#x430;&#x433;&#x43D;&#x438;&#x442;&#x43D;&#x43E;-&#x440;&#x435;&#x437;&#x43E;&#x43D;&#x430;&#x43D;&#x441;&#x43D;&#x43E;&#x439; &#x442;&#x43E;&#x43C;&#x43E;&#x433;&#x440;&#x430;&#x444;&#x438;&#x438; &#x43A;&#x438;&#x441;&#x442;&#x438;", &#x41C;&#x435;&#x434;&#x438;&#x446;&#x438;&#x43D;&#x441;&#x43A;&#x430;&#x44F; &#x440;&#x430;&#x434;&#x438;&#x43E;&#x43B;&#x43E;&#x433;&#x438;&#x44F; &#x438; &#x440;&#x430;&#x434;&#x438;&#x430;&#x446;&#x438;&#x43E;&#x43D;&#x43D;&#x430;&#x44F; &#x431;&#x435;&#x437;&#x43E;&#x43F;&#x430;&#x441;&#x43D;&#x43E;&#x441;&#x442;&#x44C;, vol. 68, pp. 46-51, 2023, [DOI: 10.33266/1024-6177-2023-68-3-46-51] </nothing></item><item key="8"><nothing>&#x410;&#x43B;&#x435;&#x43A;&#x441;&#x430;&#x43D;&#x434;&#x440; &#x424;&#x435;&#x434;&#x43E;&#x442;&#x43E;&#x432;, &#x41F;&#x430;&#x432;&#x435;&#x43B; &#x422;&#x438;&#x445;&#x43E;&#x43D;&#x43E;&#x432;, &#x413;&#x435;&#x43E;&#x440;&#x433;&#x438;&#x439; &#x421;&#x43E;&#x43B;&#x43E;&#x43C;&#x430;&#x445;&#x430;, &#x412;&#x438;&#x43A;&#x442;&#x43E;&#x440; &#x41F;&#x443;&#x447;&#x43D;&#x438;&#x43D;, &#x410;&#x43D;&#x430;&#x442;&#x43E;&#x43B;&#x438;&#x439; &#x41B;&#x435;&#x432;&#x447;&#x443;&#x43A;, &#x410;&#x43B;&#x451;&#x43D;&#x430; &#x429;&#x435;&#x43B;&#x43E;&#x43A;&#x43E;&#x432;&#x430;, &#x410;&#x43D;&#x43D;&#x430; &#x425;&#x443;&#x440;&#x448;&#x43A;&#x430;&#x439;&#x43D;&#x435;&#x43D;, "Passively detunable wireless coil for 1.5 t breast imaging", MAGNETIC RESONANCE AND ITS APPLICATIONS. SPINUS-2023, pp. 75-77, 2023, </nothing></item><item key="9"><nothing>&#x410;. &#x410;. &#x411;&#x43E;&#x440;&#x448;&#x435;&#x432;&#x435;&#x446;&#x43A;&#x430;&#x44F;, &#x412;. &#x421;. &#x415;&#x433;&#x43E;&#x440;&#x43E;&#x432;&#x430;, &#x41B;. &#x42D;. &#x413;&#x430;&#x43B;&#x44F;&#x443;&#x442;&#x434;&#x438;&#x43D;&#x43E;&#x432;&#x430;, &#x418;. &#x410;. &#x41C;&#x430;&#x449;&#x435;&#x43D;&#x43A;&#x43E;, &#x410;. &#x42E;. &#x415;&#x444;&#x438;&#x43C;&#x446;&#x435;&#x432;, &#x410;&#x43B;&#x451;&#x43D;&#x430; &#x429;&#x435;&#x43B;&#x43E;&#x43A;&#x43E;&#x432;&#x430;, &#x413;. &#x415;. &#x422;&#x440;&#x443;&#x444;&#x430;&#x43D;&#x43E;&#x432;, &#x412;&#x438;&#x43A;&#x442;&#x43E;&#x440; &#x41F;&#x443;&#x447;&#x43D;&#x438;&#x43D;, &#x415;&#x432;&#x433;&#x435;&#x43D;&#x438;&#x439; &#x41A;&#x43E;&#x440;&#x435;&#x448;&#x438;&#x43D;, &#x410;&#x43D;&#x43D;&#x430; &#x41A;&#x430;&#x43B;&#x443;&#x433;&#x438;&#x43D;&#x430;, "&#x412;&#x43E;&#x437;&#x43C;&#x43E;&#x436;&#x43D;&#x43E;&#x441;&#x442;&#x438; &#x432;&#x44B;&#x441;&#x43E;&#x43A;&#x43E;&#x43F;&#x43E;&#x43B;&#x44C;&#x43D;&#x43E;&#x439; &#x43C;&#x430;&#x433;&#x43D;&#x438;&#x442;&#x43D;&#x43E;-&#x440;&#x435;&#x437;&#x43E;&#x43D;&#x430;&#x43D;&#x441;&#x43D;&#x43E;&#x439; &#x442;&#x43E;&#x43C;&#x43E;&#x433;&#x440;&#x430;&#x444;&#x438;&#x438; (3 &#x422;&#x435;&#x441;&#x43B;&#x430;) &#x432; &#x432;&#x438;&#x437;&#x443;&#x430;&#x43B;&#x438;&#x437;&#x430;&#x446;&#x438;&#x438; &#x43F;&#x43B;&#x43E;&#x434;&#x430; &#x441; &#x43F;&#x440;&#x438;&#x43C;&#x435;&#x43D;&#x435;&#x43D;&#x438;&#x435;&#x43C; &#x43C;&#x435;&#x442;&#x430;&#x443;&#x441;&#x442;&#x440;&#x43E;&#x439;&#x441;&#x442;&#x432;&#x430;", &#x422;&#x440;&#x430;&#x43D;&#x441;&#x43B;&#x44F;&#x446;&#x438;&#x43E;&#x43D;&#x43D;&#x430;&#x44F; &#x43C;&#x435;&#x434;&#x438;&#x446;&#x438;&#x43D;&#x430;, vol. 10, pp. 60-66, 2023, [DOI: 10.18705/2311-4495-2023-10-2-123-129] </nothing></item><item key="10"><nothing>Olga S. Pavlova, Mikhail V. Gulyaev, Lev L. Gervits, Anna Hurshkainen, Anton V. Nikulin, Viktor Puchnin, Ekaterina D. Teploukhova, Tatyana A. Kuropatkina, Nikolay V. Anisimov, Nataliya A. Medvedeva, Yury A. Pirogov, "&#x422;1&#xA0;mapping&#xA0;of&#xA0;rat&#xA0;lungs&#xA0;in&#xA0;19 F&#xA0;MRI&#xA0;using octafluorocyclobutane", Magnetic Resonance in Medicine, vol. 89, pp. 2318-2331, 2023, [DOI: 10.1002/mrm.29606] [IF: 3.74, SJR: 1.50]</nothing></item><item key="11"><nothing>Vladislav Koloskov, Mikhail Zubkov, Georgiy Solomakha, Viktor Puchnin, Anatolii Levchuk, Irina Melchakova, Alena Shchelokova, "Improving detection of fMRI activation at 1.5&#xA0;T using high permittivity ceramics", Journal of Magnetic Resonance, vol. 348, pp. 107390, 2023, [DOI: 10.1016/j.jmr.2023.107390] [IF: 2.73, SJR: 0.82]</nothing></item><item key="12"><nothing>Viktor Puchnin, Aigerim Jandaliyeva, Anna Hurshkainen, Georgiy Solomakha, Anton Nikulin, Polina Petrova, Anna Lavrenteva, Anna Andreychenko, Alena Shchelokova, "Quadrature transceive wireless coil: Design concept and application for bilateral breast MRI at 1.5 T", Magnetic Resonance in Medicine, 2022, [DOI: 10.1002/mrm.29507] [IF: 3.74, SJR: 1.50]</nothing></item><item key="13"><nothing>K.S. Anpilogova, &#x412;&#x438;&#x43A;&#x442;&#x43E;&#x440; &#x41F;&#x443;&#x447;&#x43D;&#x438;&#x43D;, G.E. Trufanov, A.Yu. Efimtsev, V.A. Fokin, &#x410;&#x43B;&#x451;&#x43D;&#x430; &#x429;&#x435;&#x43B;&#x43E;&#x43A;&#x43E;&#x432;&#x430;, A.E. Andreichenko, T.M. Bobrovskaya, "INVESTIGATION OF THE DIAGNOSTIC QUALITY OF BREAST MRI USING INNOVATIVE WIRELESS COILS", &#x41C;&#x435;&#x434;&#x438;&#x446;&#x438;&#x43D;&#x441;&#x43A;&#x430;&#x44F; &#x440;&#x430;&#x434;&#x438;&#x43E;&#x43B;&#x43E;&#x433;&#x438;&#x44F; &#x438; &#x440;&#x430;&#x434;&#x438;&#x430;&#x446;&#x438;&#x43E;&#x43D;&#x43D;&#x430;&#x44F; &#x431;&#x435;&#x437;&#x43E;&#x43F;&#x430;&#x441;&#x43D;&#x43E;&#x441;&#x442;&#x44C;, vol. 67, pp. 69-74, 2022, [DOI: 10.33266/1024-6177-2022-67-5-69-74] </nothing></item><item key="14"><nothing>Viktor Puchnin, Mikhail Gulyaev, Yury Pirogov, Mikhail Zubkov, "Imaging capabilities of the 1H-X-nucleus metamaterial-inspired multinuclear RF-coil", IEEE Transactions on Medical Imaging, pp. 1-1, 2022, [DOI: 10.1109/tmi.2022.3143693] [IF: 11.04, SJR: 4.05]</nothing></item><item key="15"><nothing>Aigerim Jandaliyeva, Viktor Puchnin, Alexey Slobozhanyuk, Alena Shchelokova, "Control of the near magnetic field pattern uniformity inside metamaterial-inspired volumetric resonators", Photonics and Nanostructures - Fundamentals and Applications, vol. 48, pp. 100989, 2021, [DOI: 10.1016/j.photonics.2021.100989] [IF: 3.01, SJR: 0.55]</nothing></item><item key="16"><nothing>Viktor Puchnin, Anna Hurshkainen, Georgiy Solomakha, Anna Andreychenko, Alena Shchelokova, "Comparison of different wireless coils for 1.5 T bilateral breast MRI", Journal of Physics: Conference Series, vol. 2015, pp. 012116, 2021, [DOI: 10.1088/1742-6596/2015/1/012116] [SJR: 0.21]</nothing></item><item key="17"><nothing>Viktor Puchnin, M Gulyaev, Mikhail Zubkov, "Magnetic resonance imaging with a multi-tunable metamaterial-inspired radiofrequency coil", Journal of Physics: Conference Series, vol. 2015, pp. 012171, 2021, [DOI: 10.1088/1742-6596/2015/1/012171] [SJR: 0.21]</nothing></item><item key="18"><nothing>Viktor Puchnin, Anna Hurshkainen, Georgiy Solomakha, Anna Andreychenko, Alena Shchelokova, "Metamaterial inspired resonator for targeted breast MRI at 1.5 T.", AIP Conference Proceedings, vol. 2300, pp. 020100, 2020, [DOI: 10.1063/5.0031918] [SJR: 0.19]</nothing></item><item key="19"><nothing>Viktor Puchnin, Georgiy Solomakha, Arthur W. Magill, Anna Andreychenko, Alena Shchelokova, "Metamaterial inspired wireless coil for clinical breast imaging", Journal of Magnetic Resonance, vol. 322, pp. 106877, 2020, [DOI: 10.1016/j.jmr.2020.106877] [IF: 2.23, SJR: 0.78]</nothing></item></response>
