MRI at ultra-high field (UHF, ≥7 T) provides a natural strategy for improving the quality of X-nucleus magnetic resonance spectroscopy and imaging due to the intrinsic benefit of increased signal-to-noise ratio. Considering that RF coils require both local transmission and reception at UHF, the designs of double-tuned coils, which often consist of several layers of transmit and receive resonant elements, become quite complex. A few years ago, a new type of RF coil, ie a dipole antenna, was developed and used for human body and head imaging at UHF. Due to the mechanical and electrical simplicity of dipole antennas, combining an X-nucleus surface loop array with 1 H dipoles can substantially simplify the design of a double-tuned UHF human hea...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
\u3cp\u3eAlthough the potential of dipole antennas for ultrahigh-field (UHF) MRI is largely recogniz...
A handful of groups worldwide are equipped with magnets stronger than 7T. The excellence of MRI resu...
Dipole antennas have been successfully utilized at ultra-high fields (UHF, >7 T) for human body and ...
Important issues in designing radiofrequency (RF) coils for human head imaging at ultra-high field (...
The advancement of clinical applications of ultrahigh field (UHF) MRI depends heavily on advances in...
Improvement of signal-to-noise ratio (SNR) is a critical step in designing any MRI radio frequency (...
We developed a novel 9.4T (400MHz) human head transceiver array consisted of 8 optimized bent folded...
The advancement of clinical applications of 7T MRI depends heavily on the development of new RF coil...
Purpose: To provide transmit whole-brain coverage at 9.4 T using an array with only eight elements a...
In spite of great benefits of 7T MRI, its further clinical development is associated with difficulti...
Ultra-high-field (UHF, ≥7 T) human magnetic resonance imaging (MRI) provides undisputed advantages o...
Ultra-high-field (UHF, ≥7 T) human magnetic resonance imaging (MRI) provides undisputed advantages o...
For ultra-high field and frequency (UHF) magnetic resonance imaging (MRI), the associated short wave...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
\u3cp\u3eAlthough the potential of dipole antennas for ultrahigh-field (UHF) MRI is largely recogniz...
A handful of groups worldwide are equipped with magnets stronger than 7T. The excellence of MRI resu...
Dipole antennas have been successfully utilized at ultra-high fields (UHF, >7 T) for human body and ...
Important issues in designing radiofrequency (RF) coils for human head imaging at ultra-high field (...
The advancement of clinical applications of ultrahigh field (UHF) MRI depends heavily on advances in...
Improvement of signal-to-noise ratio (SNR) is a critical step in designing any MRI radio frequency (...
We developed a novel 9.4T (400MHz) human head transceiver array consisted of 8 optimized bent folded...
The advancement of clinical applications of 7T MRI depends heavily on the development of new RF coil...
Purpose: To provide transmit whole-brain coverage at 9.4 T using an array with only eight elements a...
In spite of great benefits of 7T MRI, its further clinical development is associated with difficulti...
Ultra-high-field (UHF, ≥7 T) human magnetic resonance imaging (MRI) provides undisputed advantages o...
Ultra-high-field (UHF, ≥7 T) human magnetic resonance imaging (MRI) provides undisputed advantages o...
For ultra-high field and frequency (UHF) magnetic resonance imaging (MRI), the associated short wave...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
\u3cp\u3eAlthough the potential of dipole antennas for ultrahigh-field (UHF) MRI is largely recogniz...
A handful of groups worldwide are equipped with magnets stronger than 7T. The excellence of MRI resu...