This study was designed to assess whether breath-hold cardiac multiecho imaging at 3.0 T is achievable without significant image artefacts and if fat/water phase interference modulates the exponential T2* signal decay. Twelve healthy volunteers (mean age 39) were imaged on a Philips Intera 3.0 T MRI scanner. Multiecho imaging was performed with a breath-hold spoiled gradient echo sequence with a seven echo readout (echo times 1.15–8.05 ms, repetition time 11 ms) using a black-blood prepulse and volume shimming. T2* values were calculated with both mono- and biexpoential fits from the mean signal intensity of the interventricular septum. The global mean T2* was 27.3 ms ± 6.4. The mean signal-to-noise ratio (SNR) of the septum was 22.8 ± 9.9,...
Quantitative myocardial T2 is a promising technique to assess myocardial inflammation and edema (1)....
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
Purpose: Respiratory motion‐compensated (MC) 3D cardiac fat‐water imaging at 7T. Methods: Free‐brea...
This study was designed to assess whether breath-hold cardiac multiecho imaging at 3.0 T is achievab...
Research ethics committee approval was obtained for this study, and written informed consent was obt...
Background: Myocardial oxygenation imaging could help determine the presence of microvascular dysfun...
ObjectivesThis study sought to establish an accurate and reproducible T2-mapping cardiac magnetic re...
We developeda sequence by which TI- and T2*-weighted images can be acquired simultaneously and demon...
Myocardial T1, T2 and T2* imaging techniques become more and more used in clinical practice. While n...
Purpose: To assess tissue iron concentrations by the use of a gradient echo T2 * multiecho technique...
Detecting myocardial perfusion reserve differences using Blood Oxygen Level Dependent (BOLD) MRI may...
Purpose: To investigate the feasibility of measuring myocardial T2 at 3 Tesla for assessment of tiss...
PURPOSE: To develop a free-breathing, non-electrocardiogram technique for simultaneous myocardial T1...
Cardiac T-2* mapping is a noninvasive MRI method that is used to identify myocardial iron accumulati...
Background: Myocardial T2* mapping at 1.5T remains the gold standard, but the use of 3T scanners is ...
Quantitative myocardial T2 is a promising technique to assess myocardial inflammation and edema (1)....
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
Purpose: Respiratory motion‐compensated (MC) 3D cardiac fat‐water imaging at 7T. Methods: Free‐brea...
This study was designed to assess whether breath-hold cardiac multiecho imaging at 3.0 T is achievab...
Research ethics committee approval was obtained for this study, and written informed consent was obt...
Background: Myocardial oxygenation imaging could help determine the presence of microvascular dysfun...
ObjectivesThis study sought to establish an accurate and reproducible T2-mapping cardiac magnetic re...
We developeda sequence by which TI- and T2*-weighted images can be acquired simultaneously and demon...
Myocardial T1, T2 and T2* imaging techniques become more and more used in clinical practice. While n...
Purpose: To assess tissue iron concentrations by the use of a gradient echo T2 * multiecho technique...
Detecting myocardial perfusion reserve differences using Blood Oxygen Level Dependent (BOLD) MRI may...
Purpose: To investigate the feasibility of measuring myocardial T2 at 3 Tesla for assessment of tiss...
PURPOSE: To develop a free-breathing, non-electrocardiogram technique for simultaneous myocardial T1...
Cardiac T-2* mapping is a noninvasive MRI method that is used to identify myocardial iron accumulati...
Background: Myocardial T2* mapping at 1.5T remains the gold standard, but the use of 3T scanners is ...
Quantitative myocardial T2 is a promising technique to assess myocardial inflammation and edema (1)....
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
Purpose: Respiratory motion‐compensated (MC) 3D cardiac fat‐water imaging at 7T. Methods: Free‐brea...