The aim of this study was to compare conduction velocities of motor fibers to smaller and larger muscles and to investigate the advantages and disadvantages of recordings from the gastrocnemius muscle with surface electrodes over the recordings from small foot muscles (interosseous muscles) with needle electrodes in rats. Surface and needle recordings are suitable in measuring the motor conduction velocity of the sciatic (tibial) nerve. It should be noted that the motor velocity measured from the gastrocnemius muscle is higher than the motor velocity elicited from small foot muscles. Surface recordings provide information on the amplitude and duration of M responses
A muscle fibre can be excited by electrical stimulation using a needle electrode. Action potentials ...
Abstract Purpose: To evaluate if the type of electrode (needle vs. surface) affects the electromyo...
The purpose of the present study was to investigate to what extent fast- twitch IIX and IIB fiber re...
The aim of this study was to compare conduction velocities of motor fibers to smaller and larger mus...
The aim of this study was to compare conduction velocities of motor fibers to smaller and larger mus...
Assessment of the conduction velocity of motor fibers of the rat tail nerves has been used by some a...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
The conduction velocity of red and white muscle fibers were measured by intracellular microelectrode...
The conduction velocity of red and white muscle fibers were measured by intracellular microelectrode...
A muscle fibre can be excited by electrical stimulation using a needle electrode. Action potentials ...
Abstract Purpose: To evaluate if the type of electrode (needle vs. surface) affects the electromyo...
The purpose of the present study was to investigate to what extent fast- twitch IIX and IIB fiber re...
The aim of this study was to compare conduction velocities of motor fibers to smaller and larger mus...
The aim of this study was to compare conduction velocities of motor fibers to smaller and larger mus...
Assessment of the conduction velocity of motor fibers of the rat tail nerves has been used by some a...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
The conduction velocities of excitation of the skeletal muscle fibers of man and rat were measured b...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
Muscle fiber conduction velocity (CV) is commonly estimated from surface electromyograms (EMGs) coll...
The conduction velocity of red and white muscle fibers were measured by intracellular microelectrode...
The conduction velocity of red and white muscle fibers were measured by intracellular microelectrode...
A muscle fibre can be excited by electrical stimulation using a needle electrode. Action potentials ...
Abstract Purpose: To evaluate if the type of electrode (needle vs. surface) affects the electromyo...
The purpose of the present study was to investigate to what extent fast- twitch IIX and IIB fiber re...