PURPOSE: To implement and characterize an isotropic three-dimensional cardiac T2 mapping technique. METHODS: A self-navigated three-dimensional radial segmented balanced steady-state free precession pulse sequence with an isotropic 1.7-mm spatial resolution was implemented at 3T with a variable T2 preparation module. Bloch equation and Monte Carlo simulations were performed to determine the influence of the heart rate, B1 inhomogeneity and noise on the T2 fitting accuracy. In a phantom study, the accuracy of the pulse sequence was studied through comparison with a gold-standard spin-echo T2 mapping method. The robustness and homogeneity of the technique were ascertained in a study of 10 healthy adult human volunteers, while first results ob...
BACKGROUND: The aim of the study was to test the reproducibility and variability of myocardial T2 ma...
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
<div><p>Purpose</p><p>To develop a robust T<sub>1ρ</sub> magnetic resonance imaging (MRI) sequence f...
PURPOSE: To implement and characterize an isotropic three-dimensional cardiac T2 mapping technique. ...
The goal of this study was to characterize the accuracy and precision of cardiac T2 mapping as a fun...
ObjectivesThis study sought to establish an accurate and reproducible T2-mapping cardiac magnetic re...
Background: T2 mapping is a magnetic resonance imaging technique that can be used to detect myocardi...
This study sought to establish an accurate and reproducible T(2)-mapping cardiac magnetic resonance ...
Background: The aim of this study was the evaluation of a fast Gradient Spin Echo Technique (GraSE) ...
Quantitative myocardial T2 is a promising technique to assess myocardial inflammation and edema (1)....
BACKGROUND: Myocardial T1 and T2 mapping using cardiovascular magnetic resonance (CMR) are promising...
BACKGROUND:T2-Weighted (T2W) magnetic resonance imaging (MRI) pulse sequences have been used to dete...
T2 mapping is a magnetic resonance imaging technique measuring T2 relaxation time, which increases w...
Background: To evaluate and quantify the impact of a novel image-based motion correction technique i...
shown to be sensitive to oedema in acute myocardial infarction[1]. At 3T, other studies have address...
BACKGROUND: The aim of the study was to test the reproducibility and variability of myocardial T2 ma...
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
<div><p>Purpose</p><p>To develop a robust T<sub>1ρ</sub> magnetic resonance imaging (MRI) sequence f...
PURPOSE: To implement and characterize an isotropic three-dimensional cardiac T2 mapping technique. ...
The goal of this study was to characterize the accuracy and precision of cardiac T2 mapping as a fun...
ObjectivesThis study sought to establish an accurate and reproducible T2-mapping cardiac magnetic re...
Background: T2 mapping is a magnetic resonance imaging technique that can be used to detect myocardi...
This study sought to establish an accurate and reproducible T(2)-mapping cardiac magnetic resonance ...
Background: The aim of this study was the evaluation of a fast Gradient Spin Echo Technique (GraSE) ...
Quantitative myocardial T2 is a promising technique to assess myocardial inflammation and edema (1)....
BACKGROUND: Myocardial T1 and T2 mapping using cardiovascular magnetic resonance (CMR) are promising...
BACKGROUND:T2-Weighted (T2W) magnetic resonance imaging (MRI) pulse sequences have been used to dete...
T2 mapping is a magnetic resonance imaging technique measuring T2 relaxation time, which increases w...
Background: To evaluate and quantify the impact of a novel image-based motion correction technique i...
shown to be sensitive to oedema in acute myocardial infarction[1]. At 3T, other studies have address...
BACKGROUND: The aim of the study was to test the reproducibility and variability of myocardial T2 ma...
Background: Measurement of myocardial T2 * is becoming widely used in the assessment of patients at ...
<div><p>Purpose</p><p>To develop a robust T<sub>1ρ</sub> magnetic resonance imaging (MRI) sequence f...