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,...
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 ...
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...
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 ...
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...
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 ...