Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of quantitative measures of myocardial and blood T1 which are key tissue characteristics. These capabilities introduce a new frontier in cardiology, enabling the practitioner/investigator to quantify biologically important myocardial properties that otherwise can be difficult to ascertain clinically. CMR may be able to track biologically important changes in the myocardium by: a) native T1 that reflects myocardial disease involving the myocyte and interstitium without use of gadolinium based contrast agents (GBCA), or b) the extracellular volume fraction (ECV)-a direct GBCA-based measurement of the size of the extracellular space, reflecting inte...
2 Background—Extracellular matrix expansion is a key element of ventricular remodeling and a potenti...
Novel tissue biomarkers based on the spin–lattice relaxation time T1, a fundamental property in the ...
Abstract Parametric mapping techniques provide a non-invasive tool for quantifying tis...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Cardiac magnetic resonance (CMR) is a non-invasive diagnostic tool playing a key role in the assessm...
The major advantage of T1 mapping techniques lies in the quantitative assessment of the tissue compo...
Abstract Background Diffuse myocardial fibrosis, and to a lesser extent global myocardial edema, are...
Amna Abdel-Gadir,1,2 Thomas A Treibel,1,2 James C Moon1,2 1The Heart Hospital Imaging Centre, Univer...
Heart failure (HF) is a major and growing cause of morbidity and mortality. Despite initial successe...
Background Myocardial tissue characterization by cardiovascular magnetic resonance (CMR) T1 mapping...
Abstract Parametric mapping techniques provide a non-invasive tool for quantifying tissue alteration...
Parametric mapping techniques provide a non-invasive tool for quantifying tissue alterations in myoc...
Parametric mapping techniques provide a non-invasive tool for quantifying tissue alterations in myoc...
2 Background—Extracellular matrix expansion is a key element of ventricular remodeling and a potenti...
Novel tissue biomarkers based on the spin–lattice relaxation time T1, a fundamental property in the ...
Abstract Parametric mapping techniques provide a non-invasive tool for quantifying tis...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Rapid innovations in cardiovascular magnetic resonance (CMR) now permit the routine acquisition of q...
Cardiac magnetic resonance (CMR) is a non-invasive diagnostic tool playing a key role in the assessm...
The major advantage of T1 mapping techniques lies in the quantitative assessment of the tissue compo...
Abstract Background Diffuse myocardial fibrosis, and to a lesser extent global myocardial edema, are...
Amna Abdel-Gadir,1,2 Thomas A Treibel,1,2 James C Moon1,2 1The Heart Hospital Imaging Centre, Univer...
Heart failure (HF) is a major and growing cause of morbidity and mortality. Despite initial successe...
Background Myocardial tissue characterization by cardiovascular magnetic resonance (CMR) T1 mapping...
Abstract Parametric mapping techniques provide a non-invasive tool for quantifying tissue alteration...
Parametric mapping techniques provide a non-invasive tool for quantifying tissue alterations in myoc...
Parametric mapping techniques provide a non-invasive tool for quantifying tissue alterations in myoc...
2 Background—Extracellular matrix expansion is a key element of ventricular remodeling and a potenti...
Novel tissue biomarkers based on the spin–lattice relaxation time T1, a fundamental property in the ...
Abstract Parametric mapping techniques provide a non-invasive tool for quantifying tis...