This work discusses active and passive electrical properties of transverse (T-)tubules in ventricular cardiomyocytes to understand the physiological roles of T-tubules. T-tubules are invaginations of the lateral membrane that provide a large surface for calcium-handling proteins to facilitate sarcomere shortening. Higher heart rates correlate with higher T-tubular densities in mammalian ventricular cardiomyocytes. We assess ion dynamics in T-tubules and the effects of sodium current in T-tubules on the extracellular potential, which leads to a partial reduction of the sodium current in deep segments of a T-tubule. We moreover reflect on the impact of T-tubules on macroscopic conduction velocity, integrating fundamental principles of action ...
AbstractThe action potential of cardiac ventricular myocytes is characterized by its long duration, ...
AbstractPrevious studies have speculated, based on indirect evidence, that the action potential at t...
ABBREVIATIONS 1. INTRODUCTION 1 1.1. PLASMALEMMAL ION CHANNELS INVOLVED IN CARDIAC ELECTRICAL ACTIV...
From PubMed via Jisc Publications RouterPublication status: aheadofprintIn mammalian cardiac myocyte...
International audienceThe transverse (t-) tubules of cardiac ventricular myocytes are invaginations ...
Abstract—The transverse tubules (t-tubules) of mammalian cardiac ventricular myocytes are invaginati...
International audienceThe transverse-axial tubular system (TATS) of cardiac ventricular myocytes is ...
T-tubules are complex tubular network formed by invagination of the surface membrane in cardiomyocte...
The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid ...
Background: Atrial fibrillation (AF) leads to a loss of transverse connections between myocyte stran...
This editorial refers to ‘Emerging mechanisms of T-tubule remodelling in heart failure ’ by A. Guo e...
The transverse (t-) tubules of cardiac ventricular myocytes are invaginations of the surface membran...
AbstractIn mammalian cardiac ventricular myocytes, Ca influx and release occur predominantly at t-tu...
Chronic mechanical load variation triggers a wide range of responses in the heart, a part of which i...
BACKGROUND Mutations in the gene encoding the cardiac voltage-gated sodium channel Nav1.5 cause v...
AbstractThe action potential of cardiac ventricular myocytes is characterized by its long duration, ...
AbstractPrevious studies have speculated, based on indirect evidence, that the action potential at t...
ABBREVIATIONS 1. INTRODUCTION 1 1.1. PLASMALEMMAL ION CHANNELS INVOLVED IN CARDIAC ELECTRICAL ACTIV...
From PubMed via Jisc Publications RouterPublication status: aheadofprintIn mammalian cardiac myocyte...
International audienceThe transverse (t-) tubules of cardiac ventricular myocytes are invaginations ...
Abstract—The transverse tubules (t-tubules) of mammalian cardiac ventricular myocytes are invaginati...
International audienceThe transverse-axial tubular system (TATS) of cardiac ventricular myocytes is ...
T-tubules are complex tubular network formed by invagination of the surface membrane in cardiomyocte...
The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid ...
Background: Atrial fibrillation (AF) leads to a loss of transverse connections between myocyte stran...
This editorial refers to ‘Emerging mechanisms of T-tubule remodelling in heart failure ’ by A. Guo e...
The transverse (t-) tubules of cardiac ventricular myocytes are invaginations of the surface membran...
AbstractIn mammalian cardiac ventricular myocytes, Ca influx and release occur predominantly at t-tu...
Chronic mechanical load variation triggers a wide range of responses in the heart, a part of which i...
BACKGROUND Mutations in the gene encoding the cardiac voltage-gated sodium channel Nav1.5 cause v...
AbstractThe action potential of cardiac ventricular myocytes is characterized by its long duration, ...
AbstractPrevious studies have speculated, based on indirect evidence, that the action potential at t...
ABBREVIATIONS 1. INTRODUCTION 1 1.1. PLASMALEMMAL ION CHANNELS INVOLVED IN CARDIAC ELECTRICAL ACTIV...