Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, with narrow intercellular clefts and cell-to-cell coupling. A model is developed from anatomical data to describe cardiac Purkinje strands of variable diameter and different internal arrangements of cells. The admittance of the model is solved analytically and fit to results of cable analysis. Using the extracted specific membrane and cell electrical parameters (Rm = 13 K omega cm2, Cm = 1.5 mu F/cm2, Ri = 100 mu cm, and Re = 50 omega cm), the model correctly predicted conduction velocity and filling of capacitance at the onset of a voltage step. The analysis permits more complete studies of the factors controlling conduction velocity; for in...
Mechanisms of slow conduction in cardiac muscle are categorized and the most likely identified. Prop...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Early development of ionic models for cardiac myocytes, from the pioneering modification of the Hodg...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
Conduction velocity is a complex physiological process that integrates the active and passive proper...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
We have used numerical methods for solving cable equations, combined with previously published mathe...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Measurements of the electrical properties of the cardiac Purkinje fibre membrane have been ...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
A theoretical model is presented for the early currents in the voltage clamp of cardiac muscle using...
Mechanisms of slow conduction in cardiac muscle are categorized and the most likely identified. Prop...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Early development of ionic models for cardiac myocytes, from the pioneering modification of the Hodg...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
Conduction velocity is a complex physiological process that integrates the active and passive proper...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
We have used numerical methods for solving cable equations, combined with previously published mathe...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Measurements of the electrical properties of the cardiac Purkinje fibre membrane have been ...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
A theoretical model is presented for the early currents in the voltage clamp of cardiac muscle using...
Mechanisms of slow conduction in cardiac muscle are categorized and the most likely identified. Prop...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Early development of ionic models for cardiac myocytes, from the pioneering modification of the Hodg...