Ceramic resonators for targeted clinical magnetic resonance imaging of the breast

Here, the authors present a concept for targeted clinical magnetic resonance imaging for relatively small targets in the body. They use an artificial resonator for spatial redistribution and passive focusing of the radiofrequency magnetic flux and demonstrate feasibility for targeted breast imaging.

Bibliographic Details
Main Authors: Alena Shchelokova, Viacheslav Ivanov, Anna Mikhailovskaya, Egor Kretov, Ivan Sushkov, Svetlana Serebryakova, Elizaveta Nenasheva, Irina Melchakova, Pavel Belov, Alexey Slobozhanyuk, Anna Andreychenko
Format: Article
Language:English
Published: Nature Publishing Group 2020-07-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-17598-3
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spelling doaj-c0897e05abb64e42b6a736862037dff42021-08-01T11:40:04ZengNature Publishing GroupNature Communications2041-17232020-07-011111710.1038/s41467-020-17598-3Ceramic resonators for targeted clinical magnetic resonance imaging of the breastAlena Shchelokova0Viacheslav Ivanov1Anna Mikhailovskaya2Egor Kretov3Ivan Sushkov4Svetlana Serebryakova5Elizaveta Nenasheva6Irina Melchakova7Pavel Belov8Alexey Slobozhanyuk9Anna Andreychenko10Department of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityDepartment of Radiology, Vreden Russian Institute of Traumatology and OrthopedicsAll-Russian Center of Emergency and Radiation Medicine named after A.M. NikiforovCeramics Co., LtdDepartment of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityDepartment of Physics and Engineering, ITMO UniversityHere, the authors present a concept for targeted clinical magnetic resonance imaging for relatively small targets in the body. They use an artificial resonator for spatial redistribution and passive focusing of the radiofrequency magnetic flux and demonstrate feasibility for targeted breast imaging.https://doi.org/10.1038/s41467-020-17598-3
collection DOAJ
language English
format Article
sources DOAJ
author Alena Shchelokova
Viacheslav Ivanov
Anna Mikhailovskaya
Egor Kretov
Ivan Sushkov
Svetlana Serebryakova
Elizaveta Nenasheva
Irina Melchakova
Pavel Belov
Alexey Slobozhanyuk
Anna Andreychenko
spellingShingle Alena Shchelokova
Viacheslav Ivanov
Anna Mikhailovskaya
Egor Kretov
Ivan Sushkov
Svetlana Serebryakova
Elizaveta Nenasheva
Irina Melchakova
Pavel Belov
Alexey Slobozhanyuk
Anna Andreychenko
Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
Nature Communications
author_facet Alena Shchelokova
Viacheslav Ivanov
Anna Mikhailovskaya
Egor Kretov
Ivan Sushkov
Svetlana Serebryakova
Elizaveta Nenasheva
Irina Melchakova
Pavel Belov
Alexey Slobozhanyuk
Anna Andreychenko
author_sort Alena Shchelokova
title Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
title_short Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
title_full Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
title_fullStr Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
title_full_unstemmed Ceramic resonators for targeted clinical magnetic resonance imaging of the breast
title_sort ceramic resonators for targeted clinical magnetic resonance imaging of the breast
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2020-07-01
description Here, the authors present a concept for targeted clinical magnetic resonance imaging for relatively small targets in the body. They use an artificial resonator for spatial redistribution and passive focusing of the radiofrequency magnetic flux and demonstrate feasibility for targeted breast imaging.
url https://doi.org/10.1038/s41467-020-17598-3
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