The design and construction of a 4 T transverse electromagnetic (TEM) transmit/receive head coil and a four‐channel phased array receive‐only RF system are described. To enable both high‐resolution imaging of the entire brain and high‐resolution spectroscopic imaging, active PIN diode decoupling was used in both the TEM resonator and each surface coil in the array. This configuration allows for both transmission and reception from the volume coil as well as reception from the phased array. The surface coils were decoupled by overlapping the coils and using preamplifier decoupling. Since at high frequencies construction of a lumped element matching quarter wavelength transformer, an important component of the preamplifier decoupling, becomes...
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...
Ultra-high field magnetic resonance imaging (MRI) scanners ( ≥ 7T) require radio-frequency (RF) coil...
The design and construction of an actively detuned TEM volume transmit/four-channel phased array rec...
This article describes technological advances in quadrature transverse electromagnetic (TEM) volume ...
The performance of transceive phased array (one channel phased transmission; multi-channel reception...
Purpose To demonstrate the feasibility of high‐field SENSE imaging of large objects, such as the hum...
Typically 31P in vivo magnetic resonance spectroscopic studies are limited by SNR considerations. Al...
Typically 31P spectroscopic studies are limited by SNR considerations. Although phased arrays can im...
The paper describes technological advances in high-field (7 T) transceiver-phased arrays developed f...
The paper describes technological advances in high-field (7 T) transceiver-phased arrays developed f...
MRI has the potential to produce clear anatomic, as well as functional, images of the human body. Ho...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
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...
Ultra-high field magnetic resonance imaging (MRI) scanners ( ≥ 7T) require radio-frequency (RF) coil...
The design and construction of an actively detuned TEM volume transmit/four-channel phased array rec...
This article describes technological advances in quadrature transverse electromagnetic (TEM) volume ...
The performance of transceive phased array (one channel phased transmission; multi-channel reception...
Purpose To demonstrate the feasibility of high‐field SENSE imaging of large objects, such as the hum...
Typically 31P in vivo magnetic resonance spectroscopic studies are limited by SNR considerations. Al...
Typically 31P spectroscopic studies are limited by SNR considerations. Although phased arrays can im...
The paper describes technological advances in high-field (7 T) transceiver-phased arrays developed f...
The paper describes technological advances in high-field (7 T) transceiver-phased arrays developed f...
MRI has the potential to produce clear anatomic, as well as functional, images of the human body. Ho...
PURPOSE: To design, construct and validate radiofrequency (RF) transmit and receive phased array coi...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
Purpose/Introduction: Homogeneous excitation at field strengths as high as 9.4T is achieved by RF sh...
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...
Ultra-high field magnetic resonance imaging (MRI) scanners ( ≥ 7T) require radio-frequency (RF) coil...