A theoretical model is presented for current and voltage clamp of multifiber bundles in a double sucrose gap. Attention is focused on methodological errors introduced by the intercellular cleft resistance. The bundle is approximated by a continuous geometry. Voltage distribution, as a function of radial distance and time, is defined by a parabolic partial differential equation which is specified for different membrane characteristics. Assuming a linear membrane, analytical solutions are given for current step and voltage step conditions. The theoretical relations (based on Bessel functions) may be used to calculate membrane conductance and capacity from experimental clamp data. The case of a nonlinear membrane with standard Hodgkin-Huxley k...
The electrical properties of gap junctions in cell pairs are usually studied by means of the dual vo...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
A theoretical model is presented for current and voltage clamp of multifiber bundles in a double suc...
In this paper we extend the simulation of the voltage clamp of a single nerve fiber to a bundle of a...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
This paper presents a mathematical model for analyzing systematic errors associated with the membran...
A theoretical model is presented for the early currents in the voltage clamp of cardiac muscle using...
A method of stabilizing the membrane potential of a small area of cardiac muscle membrane and the li...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
This is the third in a series of four papers in which we present the numerical simulations of the ap...
The sucrose gap technique, though widely employed in many tissues, could not be used for quantitativ...
The nonlinear cable equation was solved numerically by means of an implicit procedure. The correlati...
The analysis of errors associated with saline-sucrose interdiffusion in sucrose gap experiments on m...
Transient responses of a space-clamped squid axon membrane to step changes of voltage or current are...
The electrical properties of gap junctions in cell pairs are usually studied by means of the dual vo...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
A theoretical model is presented for current and voltage clamp of multifiber bundles in a double suc...
In this paper we extend the simulation of the voltage clamp of a single nerve fiber to a bundle of a...
A model of a 100 micrometers diameter Purkinje fiber with intercellular clefts was studied under vol...
This paper presents a mathematical model for analyzing systematic errors associated with the membran...
A theoretical model is presented for the early currents in the voltage clamp of cardiac muscle using...
A method of stabilizing the membrane potential of a small area of cardiac muscle membrane and the li...
The impedence of sheep Purkinje strands, measured to 3–5 kHz, is interpreted with circuit models bas...
This is the third in a series of four papers in which we present the numerical simulations of the ap...
The sucrose gap technique, though widely employed in many tissues, could not be used for quantitativ...
The nonlinear cable equation was solved numerically by means of an implicit procedure. The correlati...
The analysis of errors associated with saline-sucrose interdiffusion in sucrose gap experiments on m...
Transient responses of a space-clamped squid axon membrane to step changes of voltage or current are...
The electrical properties of gap junctions in cell pairs are usually studied by means of the dual vo...
Recent measurements have indicated that some of the cardiac cell electrical capacitance is in series...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...