This paper presents the construction, derivation, and test of a mesh model for the electrical properties of the transverse tubular system (T-system) in skeletal muscle. We model the irregular system of tubules as a random network of miniature transmission lines, using differential equations to describe the potential between the nodes and difference equations to describe the potential at the nodes. The solution to the equations can be accurately represented in several approximate forms with simple physical and graphical interpretations. All the parameters of the solution are specified by impedance and morphometric measurements. The effect of wide circumferential spacing between T-system openings is analyzed and the resulting restricted mesh ...
The transfer of intramembrane charge during an action potential at 4 degrees C was reconstructed for...
The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with ...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
All in-text references underlined in blue are linked to publications on ResearchGate, letting you ac...
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 linear electrical properties of skeletal muscle fibers have been analyzed using lumped circuit a...
Impedance measurements are necessary to determine the passive electrical properties of cells includi...
Skeletal muscle fibres are very large and elongated. In response to excitation there must be a rapid...
The linear electrical properties of skeletal muscle fibers have been analyzed using lumped circuit a...
The transfer of intramembrane charge during an action potential at 4 degrees C was reconstructed for...
The authors present equivalent circuit models of skeletal muscle tissue for the directions parallel ...
The tubular (t) system is essential for normal function of skeletal muscle fibre, acting as a condui...
The capacitance C′e, presumed to be located across the walls of the transverse tubules of twitch fib...
The transfer of intramembrane charge during an action potential at 4 degrees C was reconstructed for...
The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with ...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...
This paper presents the construction, derivation, and test of a mesh model for the electrical proper...
All in-text references underlined in blue are linked to publications on ResearchGate, letting you ac...
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 linear electrical properties of skeletal muscle fibers have been analyzed using lumped circuit a...
Impedance measurements are necessary to determine the passive electrical properties of cells includi...
Skeletal muscle fibres are very large and elongated. In response to excitation there must be a rapid...
The linear electrical properties of skeletal muscle fibers have been analyzed using lumped circuit a...
The transfer of intramembrane charge during an action potential at 4 degrees C was reconstructed for...
The authors present equivalent circuit models of skeletal muscle tissue for the directions parallel ...
The tubular (t) system is essential for normal function of skeletal muscle fibre, acting as a condui...
The capacitance C′e, presumed to be located across the walls of the transverse tubules of twitch fib...
The transfer of intramembrane charge during an action potential at 4 degrees C was reconstructed for...
The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with ...
Conduction of the action potential in cardiac muscle is complicated by its multicellular structure, ...