PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coils for high-resolution visual cortex imaging at 7 Tesla.METHODS: A 4 channel transmit and 16 channel receive array was constructed on a conformal polycarbonate former. Transmit field efficiency and homogeneity were simulated and validated, along with the Specific Absorption Rate, using [Formula: see text] mapping techniques and electromagnetic simulations. Receiver signal-to-noise ratio (SNR), temporal SNR (tSNR) across EPI time series, g-factors for accelerated imaging and noise correlations were evaluated and compared with a commercial 32 channel whole head coil. The performance of the coil was further evaluated with human subjects through ...
Purpose: Parallel transmit technology for MRI at 7 tesla will significantly benefit from high perfor...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
RF coils for functional magnetic resonance spectroscopy at ultra-high field strength must be designe...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
To design, construct and validate radiofrequency (RF) transmit and receive phased array coils for hi...
To design, construct and validate radiofrequency (RF) transmit and receive phased array coils for hi...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
Multi-channel receive array rf-coils have become widely available for fMRI. The improved SNR and pos...
Purpose: Parallel transmit technology for MRI at 7 tesla will significantly benefit from high perfor...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
RF coils for functional magnetic resonance spectroscopy at ultra-high field strength must be designe...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
To design, construct and validate radiofrequency (RF) transmit and receive phased array coils for hi...
To design, construct and validate radiofrequency (RF) transmit and receive phased array coils for hi...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
Multi-channel receive array rf-coils have become widely available for fMRI. The improved SNR and pos...
Purpose: Parallel transmit technology for MRI at 7 tesla will significantly benefit from high perfor...
The aim of this thesis is to investigate and develop radiofrequency (RF) coils for high resolution i...
RF coils for functional magnetic resonance spectroscopy at ultra-high field strength must be designe...