Improvement of signal-to-noise ratio (SNR) is a critical step in designing any MRI radio frequency (RF) coil. Increasing the number of surface loops in a human head receive (Rx) array improves the peripheral SNR, while the central SNR doesnt substantially change. Recent studies demonstrated that an optimal central SNR at UHF frequencies (298 MHz and higher) requires contribution of two current patterns associated with loops and dipoles. To incorporate multiple dipoles into a human head loop Rx-array, the dipole length has to be substantially reduced, which compromises its performance. Another issue of using short Rx-dipoles is a sensitivity of their resonance frequency to loading due to a large electrical field near the dipole. To reduce th...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose: To improve whole-brain SNR at 7 Tesla, a novel 32-element hybrid human head array coil was ...
Increasing the number of surface loops in a human head receive (Rx)-array improves the peripheral SN...
Purpose: To improve the receive (Rx) performance of a human head transceiver (TxRx) array at 9.4T wi...
MRI at ultra-high field (UHF, ≥7 T) provides a natural strategy for improving the quality of X-nucle...
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...
Purpose: To provide transmit whole-brain coverage at 9.4 T using an array with only eight elements a...
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...
The advancement of clinical applications of ultrahigh field (UHF) MRI depends heavily on advances in...
Important issues in designing radiofrequency (RF) coils for human head imaging at ultra-high field (...
For ultra-high field and frequency (UHF) magnetic resonance imaging (MRI), the associated short wave...
Improvement of SNR is a critical step in designing any MRI RF coil. Use of arrays instead of a singl...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose: To improve whole-brain SNR at 7 Tesla, a novel 32-element hybrid human head array coil was ...
Increasing the number of surface loops in a human head receive (Rx)-array improves the peripheral SN...
Purpose: To improve the receive (Rx) performance of a human head transceiver (TxRx) array at 9.4T wi...
MRI at ultra-high field (UHF, ≥7 T) provides a natural strategy for improving the quality of X-nucle...
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...
Purpose: To provide transmit whole-brain coverage at 9.4 T using an array with only eight elements a...
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...
The advancement of clinical applications of ultrahigh field (UHF) MRI depends heavily on advances in...
Important issues in designing radiofrequency (RF) coils for human head imaging at ultra-high field (...
For ultra-high field and frequency (UHF) magnetic resonance imaging (MRI), the associated short wave...
Improvement of SNR is a critical step in designing any MRI RF coil. Use of arrays instead of a singl...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose/Introduction: Tight-fit human head ultra-high field (UHF, C7T) transceiver (TxRx) surface lo...
Purpose: To improve whole-brain SNR at 7 Tesla, a novel 32-element hybrid human head array coil was ...