Purpose: Transmit arrays are essential tools for various RF shimming or parallel excitation techniques at 7T. Here we present an array design with triangular coils to improve diversity in the B1\ua0profiles in the longitudinal (z) direction and allow for next‐nearest neighbor decoupling.Methods: Two cylindrical 8‐channel arrays having the same length and diameter, 1 of triangular coils and the other of rectangular coils, were constructed and compared in phantom imaging experiments using measures of excitation distribution for a variety of RF shim settings and geometry factor maps for different accelerations on different planes.Results: Coupling between elements was −20 dB or better for all triangular coil pairs, but worse than −12 dB for se...
At 7T single drive volume coils suffer from poor homogeneity and low efficiency. Transceiver arrays ...
Introduction: The improved SNR at 7T provides advantages for both 1H and X nuclei. At 7T, transceive...
Ultrahigh-field (UHF) (≥7 T) transmit (Tx) human head surface loop phased arrays improve both the Tx...
One of the major challenges in constructing multi‐channel and multi‐row transmit (Tx) or transceiver...
A novel geometrically adjustable transceiver array system is presented. A key feature of the geometr...
Purpose To improve the decoupling of a transceiver human head phased array at ultra-high fields (UHF...
Ultra-high field magnetic resonance imaging (MRI) scanners ( ≥ 7T) require radio-frequency (RF) coil...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
The well known transmit field inhomogeneity at ultra high field strengths, caused by the shorter RF ...
Transceiver surface coil arrays improve transmit performance and B1 homogeneity for head imaging up ...
At 7T, interactions between the human brain and RF result in poor homogeneity and efficiency when vo...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
Purpose/Introduction: Signal to noise ratio (SNR) and transmit efficiency are the most important con...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
At 7T single drive volume coils suffer from poor homogeneity and low efficiency. Transceiver arrays ...
Introduction: The improved SNR at 7T provides advantages for both 1H and X nuclei. At 7T, transceive...
Ultrahigh-field (UHF) (≥7 T) transmit (Tx) human head surface loop phased arrays improve both the Tx...
One of the major challenges in constructing multi‐channel and multi‐row transmit (Tx) or transceiver...
A novel geometrically adjustable transceiver array system is presented. A key feature of the geometr...
Purpose To improve the decoupling of a transceiver human head phased array at ultra-high fields (UHF...
Ultra-high field magnetic resonance imaging (MRI) scanners ( ≥ 7T) require radio-frequency (RF) coil...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
The well known transmit field inhomogeneity at ultra high field strengths, caused by the shorter RF ...
Transceiver surface coil arrays improve transmit performance and B1 homogeneity for head imaging up ...
At 7T, interactions between the human brain and RF result in poor homogeneity and efficiency when vo...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
Purpose/Introduction: Signal to noise ratio (SNR) and transmit efficiency are the most important con...
We evaluated and compared the performances of two simulated radiofrequency (RF) dual-row transmit ar...
We evaluated and compared the performance of an inductively decoupled and overlapped dual-row transm...
At 7T single drive volume coils suffer from poor homogeneity and low efficiency. Transceiver arrays ...
Introduction: The improved SNR at 7T provides advantages for both 1H and X nuclei. At 7T, transceive...
Ultrahigh-field (UHF) (≥7 T) transmit (Tx) human head surface loop phased arrays improve both the Tx...