An outstanding challenge in modelling biomechanics after myocardial infarction (MI) is to estimate the so-called growth tensor. Since it is impossible to track pure growth induced geometry change from in vivo magnetic resonance images alone, in this work, we propose a way of estimating a surrogate or apparent growth tensor of the human left ventricle using cine magnetic resonance (CMR) and late gadolinium enhanced (LGE) images of 16 patients following acute MI. The apparent growth tensor is evaluated at four time-points following myocardial reperfusion: 4–12 h (baseline), 3 days, 10 days and 7 months. We have identified three different growth patterns classified as the Dilation, No-Change and Shrinkage groups defined by the left ventricle e...
BACKGROUND: Infarct expansion initiates and sustains adverse left ventricular (LV) remodeling after ...
Cardiac growth and remodeling in the form of chamber dilation and wall thinning are typical hallmark...
Conference theme: Engineering Revolution In BioMedicineInvestigation of infarct myocardium structure...
AbstractObjectivesWe sought to identify advantages of contrast-enhanced magnetic resonance imaging (...
Background-We used diffusion-tensor cardiac MR to investigate myocardial microstructure changes, inc...
AbstractObjectives. This study was designed to serially assess time-dependent changes in both chambe...
Background: Our current understanding is that left ventricular (LV) remodeling after acute myocardia...
Post-ischemic left ventricular (LV) remodeling is a biologically complex process involving myocardia...
Abstract BACKGROUND: Our current understanding is that left ventricular (LV) remodeling after acute ...
In this research, we hypothesized that novel biomechanical parameters are discriminative in patients...
Regional remodelling after a left ventricular myocardial infarction is the first step in a cascade t...
The cardiac muscle architecture lies at the basis of the mechanical and electrical properties of the...
Funder: EPSRC DTPFunder: Developmental pathway funding scheme (DPFS)Abstract: To identify predictors...
BACKGROUND: To determine if global strain parameters measured by cardiovascular magnetic resonance (...
To identify predictors of left ventricular remodelling (LVR) post-myocardial infarction (MI) and rel...
BACKGROUND: Infarct expansion initiates and sustains adverse left ventricular (LV) remodeling after ...
Cardiac growth and remodeling in the form of chamber dilation and wall thinning are typical hallmark...
Conference theme: Engineering Revolution In BioMedicineInvestigation of infarct myocardium structure...
AbstractObjectivesWe sought to identify advantages of contrast-enhanced magnetic resonance imaging (...
Background-We used diffusion-tensor cardiac MR to investigate myocardial microstructure changes, inc...
AbstractObjectives. This study was designed to serially assess time-dependent changes in both chambe...
Background: Our current understanding is that left ventricular (LV) remodeling after acute myocardia...
Post-ischemic left ventricular (LV) remodeling is a biologically complex process involving myocardia...
Abstract BACKGROUND: Our current understanding is that left ventricular (LV) remodeling after acute ...
In this research, we hypothesized that novel biomechanical parameters are discriminative in patients...
Regional remodelling after a left ventricular myocardial infarction is the first step in a cascade t...
The cardiac muscle architecture lies at the basis of the mechanical and electrical properties of the...
Funder: EPSRC DTPFunder: Developmental pathway funding scheme (DPFS)Abstract: To identify predictors...
BACKGROUND: To determine if global strain parameters measured by cardiovascular magnetic resonance (...
To identify predictors of left ventricular remodelling (LVR) post-myocardial infarction (MI) and rel...
BACKGROUND: Infarct expansion initiates and sustains adverse left ventricular (LV) remodeling after ...
Cardiac growth and remodeling in the form of chamber dilation and wall thinning are typical hallmark...
Conference theme: Engineering Revolution In BioMedicineInvestigation of infarct myocardium structure...