Determining a single compound maximal motor response (MMAX) or an average superimposed MMAX response (MSUP) are commonly used reference values in experiments eliciting raw electromyographic, motor evoked potentials, H‐reflexes, and V‐waves. However, existing literature is limited in detailing the most appropriate method to normalize these electrophysiological measures. Due to the accessibility of assessment from a cortical and spinal perspective, the tibialis anterior is increasingly used in literature and hence investigated in this study. The aims of the present study were to examine the differences and level of agreement in MMAX/MSUP under different muscle actions and contraction intensities. Following a familiarization session, 22 males ...
The aim of this study was to assess differences in motor control between isometric and lengthening ...
This study compared the effects of fatigue on corticospinal responsiveness in the upper- and lower-l...
The amplitude of the maximal direct motor response (Mmax) elicited by supramaximal peripheral nerve ...
Determining a single compound maximal motor response (MMAX) or an average superimposed MMAX response...
Determining a single compound maximal motor response (MMAX) or an average superimposed MMAX response...
Compound muscle action potentials (CMAPs) recorded using surface electrodes are often used to assess...
Reliability of the motor response (M-wave) is fundamental in many reflex studies; however it has rec...
To determine the repeatability of TMS and PNS measures during lengthening and shortening muscle acti...
The electrophysiology of neuromuscular function can be analyzed at the level of the individual motor...
The paired motor unit analysis provides in vivo estimates of the magnitude of persistent inward curr...
Purpose: To investigate whether the H reflex–M wave recruitment curves obtained during maximal volu...
The modulation of motor evoked potentials (MEPs), an index of corticospinal excitability, has been s...
We examined the means, medians, and variability for motor-unit interpulse intervals (IPIs) during vo...
Copyright © 2005 by the The American Physiological Society.Despite a similar rate of change in avera...
This study compared the effects of fatigue on corticospinal responsiveness in the upper- and lower-l...
The aim of this study was to assess differences in motor control between isometric and lengthening ...
This study compared the effects of fatigue on corticospinal responsiveness in the upper- and lower-l...
The amplitude of the maximal direct motor response (Mmax) elicited by supramaximal peripheral nerve ...
Determining a single compound maximal motor response (MMAX) or an average superimposed MMAX response...
Determining a single compound maximal motor response (MMAX) or an average superimposed MMAX response...
Compound muscle action potentials (CMAPs) recorded using surface electrodes are often used to assess...
Reliability of the motor response (M-wave) is fundamental in many reflex studies; however it has rec...
To determine the repeatability of TMS and PNS measures during lengthening and shortening muscle acti...
The electrophysiology of neuromuscular function can be analyzed at the level of the individual motor...
The paired motor unit analysis provides in vivo estimates of the magnitude of persistent inward curr...
Purpose: To investigate whether the H reflex–M wave recruitment curves obtained during maximal volu...
The modulation of motor evoked potentials (MEPs), an index of corticospinal excitability, has been s...
We examined the means, medians, and variability for motor-unit interpulse intervals (IPIs) during vo...
Copyright © 2005 by the The American Physiological Society.Despite a similar rate of change in avera...
This study compared the effects of fatigue on corticospinal responsiveness in the upper- and lower-l...
The aim of this study was to assess differences in motor control between isometric and lengthening ...
This study compared the effects of fatigue on corticospinal responsiveness in the upper- and lower-l...
The amplitude of the maximal direct motor response (Mmax) elicited by supramaximal peripheral nerve ...