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Muscle fiber action potentials were recorded using filter settings between 500 Hz and 10 kHz.
Motor unit action potential (MUAP), which consists of individual muscle fiber action potentials (MFAPs), represents the electrical activity of the motor unit.
A generic clinical diagnosis of a CMS is based on the history of myasthenic symptoms from birth or early childhood, similarly affected relatives, a decremental electromyographic (EMG) response of the compound muscle fiber action potential on low-frequency (2 3 Hz) stimulation, and a negative test for anti-AChR antibodies.
Muscle compound action potential (i.e. M wave) is an index of neuromuscular propagation, or the process involved in converting an axonal action potential into a muscle fiber action potential.
Muscle fiber action potentials were elicited by intracellularly injected depolarizing current (12 nA, 100 ms), the pulses being delivered through the bridge mode of the Axoclamp-2B (Axon Instruments).
Electromyography (EMG) detects the translation of the neural impulse into muscle fiber action potentials.
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Changes in muscle fiber action-potential velocity vary with diaphragm fatigue and temperature and alter the measured amplitude of the EAdi relative to that of the respiratory drive [ 60]; however, these changes are not of a magnitude to explain the differences in EAdi observed in the present study.
Do these smooth muscle fibers exert synchronized action with the LA under the control of nerve impulses?
It is widely accepted that Dantrolene inhibits excitation-contraction (EC) coupling without greatly affecting the ability of skeletal muscle fibers to conduct action potentials [ 26].
Reasons behind this can be the band-pass filtering aspects of the electrode alone with its detection volume, superposition of action potentials in the detected EMG signal, conduction velocity of the action potential that propagate along the muscle fiber membrane.
The ability of a muscle to produce force and power is determined by the interaction of biomechanical and physiological factors, such as muscle mechanics (e.g., type of muscle action) and morphological (e.g., muscle fiber type) and neural (e.g., motor unit recruitment) factors, and by the muscle environment itself (e.g., biochemical composition) [31].
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