BACKGROUND: Quantitative T1-mapping is rapidly becoming a clinical tool in cardiovascular magnetic resonance (CMR) to objectively distinguish normal from diseased myocardium. The usefulness of any quantitative technique to identify disease lies in its ability to detect significant differences from an established range of normal values. We aimed to assess the variability of myocardial T1 relaxation times in the normal human population estimated with recently proposed Shortened Modified Look-Locker Inversion recovery (ShMOLLI) T1 mapping technique. METHODS: A large cohort of healthy volunteers (n = 342, 50% females, age 11-69 years) from 3 clinical centres across two countries underwent CMR at 1.5T. Each examination provided a single average ...
Objective To compare the robustness of native T1 mapping using mean and median pixel-wise quantifica...
BACKGROUND: Myocardial T1, T2 and T2* imaging techniques become increasingly used in clinical practi...
Abstract Background Myocardial native T1 measurements are likely influenced by intramyocardial blood...
BACKGROUND: Quantitative T1-mapping is rapidly becoming a clinical tool in cardiovascular magnetic r...
Full list of author information is available at the end of the articlemyocardial ShMOLLI T1 was with...
Background Native T1-mapping provides quantitative myocardial tissue characterization for cardiovasc...
Purpose: To use magnetic resonance imaging (MRI) at two field strengths to assess healthy adults' r...
OBJECTIVE: Our aim was to study the influence of small variations in spatial resolution and contrast...
Cardiovascular magnetic resonance (CMR) is superior to other cardiac imaging modalities in its abili...
Background: No data are available about normal ranges for native T1 in human myocardium using Genera...
BACKGROUND: Myocardial T1 and T2 mapping using cardiovascular magnetic resonance (CMR) are promising...
T1 mapping by cardiac magnetic resonance (CMR) allows detection of abnormal myocardium. A number of ...
BACKGROUND:T1 mapping is a robust and highly reproducible application to quantify myocardial relaxat...
OBJECTIVES:T1 mapping allows quantitative myocardial assessment, but its value in clinical routine r...
BACKGROUND: T1 mapping allows direct in-vivo quantitation of microscopic changes in the myocardium, ...
Objective To compare the robustness of native T1 mapping using mean and median pixel-wise quantifica...
BACKGROUND: Myocardial T1, T2 and T2* imaging techniques become increasingly used in clinical practi...
Abstract Background Myocardial native T1 measurements are likely influenced by intramyocardial blood...
BACKGROUND: Quantitative T1-mapping is rapidly becoming a clinical tool in cardiovascular magnetic r...
Full list of author information is available at the end of the articlemyocardial ShMOLLI T1 was with...
Background Native T1-mapping provides quantitative myocardial tissue characterization for cardiovasc...
Purpose: To use magnetic resonance imaging (MRI) at two field strengths to assess healthy adults' r...
OBJECTIVE: Our aim was to study the influence of small variations in spatial resolution and contrast...
Cardiovascular magnetic resonance (CMR) is superior to other cardiac imaging modalities in its abili...
Background: No data are available about normal ranges for native T1 in human myocardium using Genera...
BACKGROUND: Myocardial T1 and T2 mapping using cardiovascular magnetic resonance (CMR) are promising...
T1 mapping by cardiac magnetic resonance (CMR) allows detection of abnormal myocardium. A number of ...
BACKGROUND:T1 mapping is a robust and highly reproducible application to quantify myocardial relaxat...
OBJECTIVES:T1 mapping allows quantitative myocardial assessment, but its value in clinical routine r...
BACKGROUND: T1 mapping allows direct in-vivo quantitation of microscopic changes in the myocardium, ...
Objective To compare the robustness of native T1 mapping using mean and median pixel-wise quantifica...
BACKGROUND: Myocardial T1, T2 and T2* imaging techniques become increasingly used in clinical practi...
Abstract Background Myocardial native T1 measurements are likely influenced by intramyocardial blood...