Differences in mRNA expression levels have been observed in failing versus non-failing human hearts for several membrane channel proteins and accessory subunits. These differences may play a causal role in electrophysiological changes observed in human heart failure and atrial fibrillation, such as action potential (AP) prolongation, increased AP triangulation, decreased intracellular calcium transient (CaT) magnitude and decreased CaT triangulation. Our goal is to investigate whether the information contained in mRNA measurements can be used to predict cardiac electrophysiological remodeling in heart failure using computational modeling. Using mRNA data recently obtained from failing and non-failing human hearts, we construct failing and n...
AbstractHeart failure constitutes a major public health problem worldwide. Affected patients experie...
Cardiac arrhythmias are among the leading causes of mortality. They often arise from alterations in ...
Aims: Limited data are available regarding cardiac expression of molecules involved in heart failure...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
<div><p>Differences in mRNA expression levels have been observed in failing versus non-failing human...
AIMS: Cardiac electrical activity is extraordinarily robust. However, when it goes wrong it can have...
Abstract Aims Cardiac electrical activity is ext...
<div><p>Background</p><p>Heart failure is a final common pathway or descriptor for various cardiac p...
Background: Heart failure is a final common pathway or descriptor for various cardiac pathologies. I...
Background: Heart failure is a final common pathway or descriptor for various cardiac pathologies. I...
Heart failure has been a major cause of concern as it is one of the major causes of deaths worldwide...
AbstractHeart failure constitutes a major public health problem worldwide. Affected patients experie...
Cardiac arrhythmias are among the leading causes of mortality. They often arise from alterations in ...
Aims: Limited data are available regarding cardiac expression of molecules involved in heart failure...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
Differences in mRNA expression levels have been observed in failing versus non-failing human hearts ...
<div><p>Differences in mRNA expression levels have been observed in failing versus non-failing human...
AIMS: Cardiac electrical activity is extraordinarily robust. However, when it goes wrong it can have...
Abstract Aims Cardiac electrical activity is ext...
<div><p>Background</p><p>Heart failure is a final common pathway or descriptor for various cardiac p...
Background: Heart failure is a final common pathway or descriptor for various cardiac pathologies. I...
Background: Heart failure is a final common pathway or descriptor for various cardiac pathologies. I...
Heart failure has been a major cause of concern as it is one of the major causes of deaths worldwide...
AbstractHeart failure constitutes a major public health problem worldwide. Affected patients experie...
Cardiac arrhythmias are among the leading causes of mortality. They often arise from alterations in ...
Aims: Limited data are available regarding cardiac expression of molecules involved in heart failure...