Brain Computer Interface (BCI) and Magnetic Resonance Imaging (MRI) are two powerful medical diagnostic techniques used for human brain studies. However, wired power connection is a huge impediment for the clinical application of BCI, and most current BCIs have only been designed for immobile users in a carefully controlled environment. For the ultrahigh field (≥7T) MRI, limitations such as inhomogeneous distribution of the transmit field (B1+) and potential high power deposition inside the human tissues have not yet been fully combated by existing methods and are central in making ultrahigh field MRI practical for clinical use. In this dissertation, radio frequency (RF) methods are applied and RF antennas/coils are designed and optimize...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
Brain Computer Interface (BCI) and Magnetic Resonance Imaging (MRI) are two powerful medical diagnos...
Brain Computer Interface (BCI) and Magnetic Resonance Imaging (MRI) are two powerful medical diagnos...
Researchers in the field of MRI (Magnetic resonance imaging) are pushing towards the use of stronger...
Implantable Brain Computer Interfaces (BCIs) are designed to provide real-time control signals for p...
Implantable Brain Computer Interfaces (BCIs) are designed to provide real-time control signals for p...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
In ultrahigh-field (UHF) magnetic resonance imaging (MRI) system, the RF power required to excite th...
Magnetic resonance imaging (MRI) has become a powerful tool not only to analyze the anatomical struc...
Magnetic resonance imaging (MRI) has become a powerful tool not only to analyze the anatomical struc...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...
Brain Computer Interface (BCI) and Magnetic Resonance Imaging (MRI) are two powerful medical diagnos...
Brain Computer Interface (BCI) and Magnetic Resonance Imaging (MRI) are two powerful medical diagnos...
Researchers in the field of MRI (Magnetic resonance imaging) are pushing towards the use of stronger...
Implantable Brain Computer Interfaces (BCIs) are designed to provide real-time control signals for p...
Implantable Brain Computer Interfaces (BCIs) are designed to provide real-time control signals for p...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
In ultrahigh-field (UHF) magnetic resonance imaging (MRI) system, the RF power required to excite th...
Magnetic resonance imaging (MRI) has become a powerful tool not only to analyze the anatomical struc...
Magnetic resonance imaging (MRI) has become a powerful tool not only to analyze the anatomical struc...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
Purpose: Optimisation of transmit array performance is crucial in ultra-high-field MRI scanners such...