We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of length 200 mm at 300 MHz. The transceiver was loaded by three human head models placed at five axial positions. For each position and size of the model a set of tune capacitors was obtained, and the robustness and safety of near field generation was evaluated. The transceiver coil showed high robustness, although the safety supervision factor needed to be adjusted for each head position. An optimal head position could be found that did not require transceiver retuning. In this position, a possible reduction of both transmit RF magnetic field and safety excitation efficiency needs to be monitored
The optimized size of a single-channel surface radio frequency (RF) coil for mouse body images in a ...
In this paper, we present a study on the effects of varying the position of a single tuning capacito...
We evaluated how magnetic resonance imaging robustness depends on dual-row transmit array geometry, ...
We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of le...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
Development of an 8 channel transmit and receive Magnetic Resonance RF imaging coil was investigated...
Several clinical magnetic resonance applications at 1.5 T and higher field strengths require a caref...
Magnetic resonance imaging (MRI) strongly relies on signal-to-noise ratio (SNR) parameter that must ...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
Magnetic resonance imaging and magnetic resonance spectroscopy are noninvasive diagnostic techniques...
A number of groups are involved in ultra-high field MRI (≥7T) research because of its promise in inc...
Magnetic resonance applications in diagnostic medical imaging often utilize radiofrequency (RF) coil...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
Coils simulation and design is a fundamental task to maximize Signal-to-Noise Ratio in Magnetic Reso...
Radiofrequency (RF) coils are an essential MRI hardware component. They directly impact the spatial ...
The optimized size of a single-channel surface radio frequency (RF) coil for mouse body images in a ...
In this paper, we present a study on the effects of varying the position of a single tuning capacito...
We evaluated how magnetic resonance imaging robustness depends on dual-row transmit array geometry, ...
We numerically investigated the performance of an 8-channel loop-based MRI RF transceiver coil of le...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
Development of an 8 channel transmit and receive Magnetic Resonance RF imaging coil was investigated...
Several clinical magnetic resonance applications at 1.5 T and higher field strengths require a caref...
Magnetic resonance imaging (MRI) strongly relies on signal-to-noise ratio (SNR) parameter that must ...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
Magnetic resonance imaging and magnetic resonance spectroscopy are noninvasive diagnostic techniques...
A number of groups are involved in ultra-high field MRI (≥7T) research because of its promise in inc...
Magnetic resonance applications in diagnostic medical imaging often utilize radiofrequency (RF) coil...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
Coils simulation and design is a fundamental task to maximize Signal-to-Noise Ratio in Magnetic Reso...
Radiofrequency (RF) coils are an essential MRI hardware component. They directly impact the spatial ...
The optimized size of a single-channel surface radio frequency (RF) coil for mouse body images in a ...
In this paper, we present a study on the effects of varying the position of a single tuning capacito...
We evaluated how magnetic resonance imaging robustness depends on dual-row transmit array geometry, ...