Radiofrequency fields are ubiquitously used in Magnetic Resonance Imaging to excite water protons and form images. A non-uniform tissue temperature increase results from the balance between this power deposition and heat dissipation. Regulations impose that brain temperature should not locally exceed 39°C in normal exam conditions. Yet, because the radiofrequency field-induced temperature rise is so small, it has remained impossible to verify this safety limit in vivo on human subjects. As a result, MR practice has relied instead on electromagnetic simulations and experiments in vitro and on animals. However, anatomical and physiological differences, including anaesthesia, blur the extrapolation to humans. A methodology is introduced to mea...
Abstract According to manufacturers of both magnetic resonance imaging (MRI) machines, and implantab...
Conductive implants are in most cases a strict contraindication for MRI examinations, as RF pulses a...
RF transmit signals are an inherent part of MRI that is crucial for spin excitation. Current develop...
Radiofrequency fields are ubiquitously used in Magnetic Resonance Imaging to excite water protons an...
Sub-degree brain temperature rise occurring through RF power deposition during the MR exam was measu...
Tissue heating caused by exposure to RF radiation is a primary safety concern in MR imaging. Therefo...
At ultra-high field MRI (Bo>7T) it is crucial to predict and control the patient safety. Commonly pa...
The main purpose of this research was to develop improved methods for RF coil characterisation, and ...
High field strength MR imaging systems may require several kilowatts of RF power to obtain images. A...
Magnetic Resonance Imaging scanners have become important tools in modern day health care. During th...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Purpose: To overcome conflicting methods of local RF heat-ing measurements by proposing a simple tec...
Abstract According to manufacturers of both magnetic resonance imaging (MRI) machines, and implantab...
Conductive implants are in most cases a strict contraindication for MRI examinations, as RF pulses a...
RF transmit signals are an inherent part of MRI that is crucial for spin excitation. Current develop...
Radiofrequency fields are ubiquitously used in Magnetic Resonance Imaging to excite water protons an...
Sub-degree brain temperature rise occurring through RF power deposition during the MR exam was measu...
Tissue heating caused by exposure to RF radiation is a primary safety concern in MR imaging. Therefo...
At ultra-high field MRI (Bo>7T) it is crucial to predict and control the patient safety. Commonly pa...
The main purpose of this research was to develop improved methods for RF coil characterisation, and ...
High field strength MR imaging systems may require several kilowatts of RF power to obtain images. A...
Magnetic Resonance Imaging scanners have become important tools in modern day health care. During th...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Patient safety during Magnetic Resonance Imaging (MRI) examinations is currently guaranteed through ...
Purpose: To overcome conflicting methods of local RF heat-ing measurements by proposing a simple tec...
Abstract According to manufacturers of both magnetic resonance imaging (MRI) machines, and implantab...
Conductive implants are in most cases a strict contraindication for MRI examinations, as RF pulses a...
RF transmit signals are an inherent part of MRI that is crucial for spin excitation. Current develop...