The evaluation of the local Specific Absorption Rate (SAR) is a major concern in ultra high field (UHF) Magnetic Resonance (MR) systems. In fact, at UHF, the energy deposition due to the radio-frequency (RF) field increases and its distribution inside the subject becomes extremely inhomogeneous and subject dependent. Local SAR measurements are not available in present MR systems; thus, electromagnetic simulations must be performed for RF fields and SAR analysis. In this study we resort to 3D full wave numerical electromagnetic simulations for investigating the dependence of the local SAR at 7 T with respect to the subject size in two different scenarios: i) surface coil loaded by adults and children calves; ii) volume coil loaded by adults ...
Purpose we predict SAR during MRI exam using a 7 T 1H 298 MHz eight-channel degenerate birdcage coi...
A new and fast numerical method is presented to assess the whole-body averaged specific absorption r...
Realistic numerical models of human subjects and of the surrounding environment represent the basic ...
The evaluation of the local Specific Absorption Rate (SAR) is a major concern in ultra high field (U...
Local specific absorption rate (SAR) evaluation in ultra high field (UHF) magnetic resonance (MR) sy...
Purpose To predict local and global specific absorption rate (SAR) in individual subjects. Material...
The radio frequency (RF) energy deposited in a human subject undergoing a 7T MRI scan has the potent...
\u3cp\u3ePURPOSE: MR safety at 7 Tesla relies on accurate numerical simulations of transmit electrom...
The radiofrequency (RF) safety constraints remain a major factor limiting the quality and speed of u...
\u3cp\u3eTo avoid potentially adverse health effects of electromagnetic fields (EMF), the Internatio...
Purpose Safety limits for the permitted specific absorption rate (SAR) place restrictions on pulse s...
The finite difference time domain (FDTD) method is used to evaluate the radiofrequency (RF) magnetic...
With increasing permanent magnetic field strength B0, the frequency of the radiofrequency field B1 i...
With increasing permanent magnetic field strength B0, the frequency of the radiofrequency field B1 i...
Patient-specific radiofrequency shimming in high-field MRI strengthens the need for online, patient-...
Purpose we predict SAR during MRI exam using a 7 T 1H 298 MHz eight-channel degenerate birdcage coi...
A new and fast numerical method is presented to assess the whole-body averaged specific absorption r...
Realistic numerical models of human subjects and of the surrounding environment represent the basic ...
The evaluation of the local Specific Absorption Rate (SAR) is a major concern in ultra high field (U...
Local specific absorption rate (SAR) evaluation in ultra high field (UHF) magnetic resonance (MR) sy...
Purpose To predict local and global specific absorption rate (SAR) in individual subjects. Material...
The radio frequency (RF) energy deposited in a human subject undergoing a 7T MRI scan has the potent...
\u3cp\u3ePURPOSE: MR safety at 7 Tesla relies on accurate numerical simulations of transmit electrom...
The radiofrequency (RF) safety constraints remain a major factor limiting the quality and speed of u...
\u3cp\u3eTo avoid potentially adverse health effects of electromagnetic fields (EMF), the Internatio...
Purpose Safety limits for the permitted specific absorption rate (SAR) place restrictions on pulse s...
The finite difference time domain (FDTD) method is used to evaluate the radiofrequency (RF) magnetic...
With increasing permanent magnetic field strength B0, the frequency of the radiofrequency field B1 i...
With increasing permanent magnetic field strength B0, the frequency of the radiofrequency field B1 i...
Patient-specific radiofrequency shimming in high-field MRI strengthens the need for online, patient-...
Purpose we predict SAR during MRI exam using a 7 T 1H 298 MHz eight-channel degenerate birdcage coi...
A new and fast numerical method is presented to assess the whole-body averaged specific absorption r...
Realistic numerical models of human subjects and of the surrounding environment represent the basic ...