AbstractThe measurement, quantitative analysis, theory, and mathematical modeling of transmembrane potential and currents have been an integral part of the field of electrophysiology since its inception. Biophysical modeling of action potential propagation begins with detailed ionic current models for a patch of membrane within a distributed cable model. Voltage-clamp techniques have revolutionized clinical electrophysiology via the characterization of the transmembrane current gating variables; however, this kinetic information alone is insufficient to accurately represent propagation. Other factors, including channel density, membrane area, surface/volume ratio, axial conductivities, etc., are also crucial determinants of transmembrane cu...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
AbstractThis contribution discusses the feasibility of extracting the major features of repolarizati...
Membrane currents and extracellular [K+] were measured in canine Purkinje strands during voltage-cla...
AbstractRecently, we described a method to quantify the time course of total transmembrane current (...
This paper demonstrates quantitatively, using streamlined mathematics, how the transmembrane ionic c...
Potential gradients imposed across cell or lipid membranes break down the insulating properties of t...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We have developed a mathematical model of the human atrial myocyte, based on averaged voltage-clamp ...
Models of ion channel dynamics are usually built by fitting isolated cell experimental values of ind...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
AbstractThe action potential, once triggered in ventricular or atrial myocytes, automatically procee...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
AbstractThis contribution discusses the feasibility of extracting the major features of repolarizati...
Membrane currents and extracellular [K+] were measured in canine Purkinje strands during voltage-cla...
AbstractRecently, we described a method to quantify the time course of total transmembrane current (...
This paper demonstrates quantitatively, using streamlined mathematics, how the transmembrane ionic c...
Potential gradients imposed across cell or lipid membranes break down the insulating properties of t...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We have developed a mathematical model of the human atrial myocyte, based on averaged voltage-clamp ...
Models of ion channel dynamics are usually built by fitting isolated cell experimental values of ind...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
AbstractThe action potential, once triggered in ventricular or atrial myocytes, automatically procee...
[EN] Several mathematical models of rabbit ventricular action potential (AP) have been proposed to i...
AbstractThis contribution discusses the feasibility of extracting the major features of repolarizati...
Membrane currents and extracellular [K+] were measured in canine Purkinje strands during voltage-cla...