Impedance measurements are necessary to determine the passive electrical properties of cells including the equivalent circuits of the several pathways for current flow. Such measurements are usually made with microelectrodes of high impedance (some 15 MΩ) over a wide frequency range (1–10,000 Hz) and so are subject to many errors. An input amplifier has been developed which has negligible phase shift in this frequency range because it uses negative feedback to keep tiny the voltage on top of the microelectrode. An important source of artifact is the extracellular potential produced by capacitive current flow through the wall of the microelectrodes and the effective resistance of the bathing solution. This artifact is reduced some 10 times b...
Inwardly rectifying K+ currents were studied in cut muscle fibres from frogs using the Vaseline-gap ...
Localized impedance methods can provide useful approaches for assessing neuromuscular disease. The m...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
The transverse electrical impedance of single frog skeletal muscle fibers was measured at 31 frequen...
The transverse electrical impedance of single frog skeletal muscle fibers was measured at 31 frequen...
The electrical properties of the end of a muscle fiber were determined using three microelectrodes, ...
The electrical properties of the end of a muscle fiber were determined using three microelectrodes, ...
I T HAS long been held that transmissionof excitation from cell to cell in cardiac muscle is effecte...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
The capacitance C′e, presumed to be located across the walls of the transverse tubules of twitch fib...
A recently developed technique for in vivo determination of the electrical resistance of vascular en...
The AC electrical impedance of frog skin was measured in the range 1 cycle/second to 50 kc/second by...
The authors present an alternative technique for obtaining tissue conductivity as a function of freq...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
A method is presented for determining the magnitude of the ionic current associated with the propaga...
Inwardly rectifying K+ currents were studied in cut muscle fibres from frogs using the Vaseline-gap ...
Localized impedance methods can provide useful approaches for assessing neuromuscular disease. The m...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
The transverse electrical impedance of single frog skeletal muscle fibers was measured at 31 frequen...
The transverse electrical impedance of single frog skeletal muscle fibers was measured at 31 frequen...
The electrical properties of the end of a muscle fiber were determined using three microelectrodes, ...
The electrical properties of the end of a muscle fiber were determined using three microelectrodes, ...
I T HAS long been held that transmissionof excitation from cell to cell in cardiac muscle is effecte...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
The capacitance C′e, presumed to be located across the walls of the transverse tubules of twitch fib...
A recently developed technique for in vivo determination of the electrical resistance of vascular en...
The AC electrical impedance of frog skin was measured in the range 1 cycle/second to 50 kc/second by...
The authors present an alternative technique for obtaining tissue conductivity as a function of freq...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
A method is presented for determining the magnitude of the ionic current associated with the propaga...
Inwardly rectifying K+ currents were studied in cut muscle fibres from frogs using the Vaseline-gap ...
Localized impedance methods can provide useful approaches for assessing neuromuscular disease. The m...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...