This work provides a systematic comparison of the signal-to-noise ratio (SNR), spatial resolution, acquisition time and metabolite limits-of-detection for magnetic resonance microscopy and spectroscopy at three different magnetic field strengths of 14.1 T, 17.6 T and 22.3 T (the highest currently available for imaging), utilizing commercially available hardware. We find an SNR increase of a factor 5.9 going from 14.1 T to 22.3 T using 5 mm radiofrequency (saddle and birdcage) coils, which results in a 24-fold acceleration in acquisition time and deviates from the theoretically expected increase of factor 2.2 due to differences in hardware. This underlines the importance of not only the magnetic field strengths but also hardware optimization...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
This work provides a systematic comparison of the signal-to-noise ratio (SNR), spatial resolution, a...
Magnetic Resonance Imaging (MRI) and spatially resolved spectroscopy are valuable Magnetic Resonance...
Nuclear magnetic resonance(NMR) microscopy with 4‐μm resolution, a step closer to the 1‐μm resolutio...
This protocol describes a signal-to-noise ratio (SNR) calibration and sample preparation method for ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Better MRI scanning technologies and protocols can provide insights into neurological disorders. In ...
Purpose Inhomogeneities in the static magnetic field (B 0) deteriorate MRSI data quality by lowerin...
Conventional NMR studies involve sample volumes $(\upsilon\sb{s})$ of several cubic millimeters and ...
Conventional NMR studies involve sample volumes $(\upsilon\sb{s})$ of several cubic millimeters and ...
MR imagers with magnetic fields (B0) greater than 1.5 T are offered by all major manufacturers. Al-t...
High fields magnetic resonance imaging (MRI) experiments on humans have been historically limited by...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
This work provides a systematic comparison of the signal-to-noise ratio (SNR), spatial resolution, a...
Magnetic Resonance Imaging (MRI) and spatially resolved spectroscopy are valuable Magnetic Resonance...
Nuclear magnetic resonance(NMR) microscopy with 4‐μm resolution, a step closer to the 1‐μm resolutio...
This protocol describes a signal-to-noise ratio (SNR) calibration and sample preparation method for ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Better MRI scanning technologies and protocols can provide insights into neurological disorders. In ...
Purpose Inhomogeneities in the static magnetic field (B 0) deteriorate MRSI data quality by lowerin...
Conventional NMR studies involve sample volumes $(\upsilon\sb{s})$ of several cubic millimeters and ...
Conventional NMR studies involve sample volumes $(\upsilon\sb{s})$ of several cubic millimeters and ...
MR imagers with magnetic fields (B0) greater than 1.5 T are offered by all major manufacturers. Al-t...
High fields magnetic resonance imaging (MRI) experiments on humans have been historically limited by...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...
Purpose: The purpose of this work was to develop a fast and efficient MRSI‐FID acquisition scheme ...
PURPOSE: Inhomogeneities in the static magnetic field (B0 ) deteriorate MRSI data quality by lowerin...