Earlier work on RF metasurfaces for preclinical MRI has targeted applications such as whole‐body imaging and dual‐frequency coils. In these studies, a nonresonant loop was used to induce currents into a metasurface that was operated as a passive inductively powered resonator. However, as we show in this study, the strategy of using a resonant metasurface reduces the impact of the loop on the global performance of the assembled coil. To mitigate this deficiency, we developed a new approach that relies on the combination of a commercial surface coil and a coupled‐wire structure operated away from its resonance. This strategy enables the extension of the sensitive volume of the surface coil while maintaining its local high sensitivity without ...
Multiple-subject magnetic resonance imaging has been used in phenotyping studies to reduce the total...
This article describes technological advances in quadrature transverse electromagnetic (TEM) volume ...
In this work, the concept of mechanically adjustable MR receiver coil arrays is proposed and impleme...
International audienceEarlier work on radiofrequency (RF) metasurfaces for preclinical MRI has targe...
Magnetic resonance imaging (MRI) is the cornerstone diagnostics technique for medicine, biology, and...
International audienceIn this paper, we propose, design and test a new dual-nuclei RF-coil inspired ...
Magnetic Resonance Imaging (MRI) is the gold-standard diagnostic tool for cardiovascular conditions....
A capacitive impedance metasurface combined with a transceiver coil to improve the radio frequency m...
International audiencePreclinical MR applications at 17.2 T can require field of views on the order ...
This manuscript aims to create new kinds of volume radiofrequency coils for UHF MRI (B0 ≥ 7 T) deriv...
In this work, we propose an application of a metamaterial inspired volumetric wireless coil (WLC) ba...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
A metasurface combined with a transceiver coil to improve the radio frequency magnetic field for 1.5...
Multiple-subject magnetic resonance imaging has been used in phenotyping studies to reduce the total...
This article describes technological advances in quadrature transverse electromagnetic (TEM) volume ...
In this work, the concept of mechanically adjustable MR receiver coil arrays is proposed and impleme...
International audienceEarlier work on radiofrequency (RF) metasurfaces for preclinical MRI has targe...
Magnetic resonance imaging (MRI) is the cornerstone diagnostics technique for medicine, biology, and...
International audienceIn this paper, we propose, design and test a new dual-nuclei RF-coil inspired ...
Magnetic Resonance Imaging (MRI) is the gold-standard diagnostic tool for cardiovascular conditions....
A capacitive impedance metasurface combined with a transceiver coil to improve the radio frequency m...
International audiencePreclinical MR applications at 17.2 T can require field of views on the order ...
This manuscript aims to create new kinds of volume radiofrequency coils for UHF MRI (B0 ≥ 7 T) deriv...
In this work, we propose an application of a metamaterial inspired volumetric wireless coil (WLC) ba...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
In this work, we experimentally demonstrate an increase in the local transmit efficiency of a 1.5 T ...
A metasurface combined with a transceiver coil to improve the radio frequency magnetic field for 1.5...
Multiple-subject magnetic resonance imaging has been used in phenotyping studies to reduce the total...
This article describes technological advances in quadrature transverse electromagnetic (TEM) volume ...
In this work, the concept of mechanically adjustable MR receiver coil arrays is proposed and impleme...