We evaluated the performance of several MRI radiofrequency dual-row transmit arrays with a range of overlapping distances, head positions, and tuning conditions. For the geometries, excitation conditions and volume of interest that were investigated, location of the volume of interest in middle of the coil and a small - 10 mm - overlap is preferable. The results provided confirm that with the preferable setup, safety excitation efficiency is practically insensitive to tuning condition, and head position, thus the safety margin can be relative small, allowing shorter scan times
We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of le...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
We evaluated the performance of several MRI radiofrequency dual-row transmit arrays with a range of ...
We investigated how performance trade-off depends on dual-row transmit array geometry, position of a...
We evaluated how magnetic resonance imaging robustness depends on dual-row transmit array geometry, ...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
We used the interior-point optimization algorithm to perform static RF shimming of three overlapped ...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
We evaluated the performance of overlapped dual-row near-field arrays with radiative elements of axi...
At 9.4T, transmit-only RF array coils for human brain imaging provide mediocre transmit efficiency d...
We present a numerical investigation of the RF fields generated inside a human head by single and du...
A shielded, non-overlapped 9.4T 8-element transceive volume array was designed and constructed for s...
Commonly, for optimal MRI performance at low (<3T) magnetic fields, a local receive-only (Rx) RF pha...
We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of le...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
We evaluated the performance of several MRI radiofrequency dual-row transmit arrays with a range of ...
We investigated how performance trade-off depends on dual-row transmit array geometry, position of a...
We evaluated how magnetic resonance imaging robustness depends on dual-row transmit array geometry, ...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
We used the interior-point optimization algorithm to perform static RF shimming of three overlapped ...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
We evaluated the performance of overlapped dual-row near-field arrays with radiative elements of axi...
At 9.4T, transmit-only RF array coils for human brain imaging provide mediocre transmit efficiency d...
We present a numerical investigation of the RF fields generated inside a human head by single and du...
A shielded, non-overlapped 9.4T 8-element transceive volume array was designed and constructed for s...
Commonly, for optimal MRI performance at low (<3T) magnetic fields, a local receive-only (Rx) RF pha...
We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of le...
Ultra-high field (UHF) (>7T) transmit (Tx) and transceiver surface loop phased arrays improve Tx-eff...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...