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Updated: Aug 14, 2025

Intracortical Inhibition Within the Primary Motor Cortex Can Be Modulated by Changing the Focus of Attention
Published on: September 11, 2017
F-waves induced by motor point stimulation are facilitated during handgrip and motor imagery tasks
Naotsugu Kaneko1,2,3, Atsushi Sasaki4,5, Kai Lon Fok2,3
1Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Meguro-ku, Tokyo, 153-8902, Japan.
Abstract:
The F-wave is a motor response elicited via the antidromic firings of motor nerves by the electrical stimulation of peripheral nerves, which reflects the motoneuron pool excitability. However, the F-wave generally has low robustness i.e., low persistence and small amplitude. We recently found that motor point stimulation (MPS), which provides the muscle belly with electrical stimulation, shows different neural responses compared to nerve stimulation, e.g., MPS elicits F-waves more robustly than nerve stimulation. Here, we investigated whether F-waves induced by MPS can identify changes in motoneuron pool excitability during handgrip and motor imagery. Twelve participants participated in the present study. We applied MPS on their soleus muscle and recorded F-waves during eyes-open (EO), eyes-closed (EC), handgrip (HG), and motor imagery (MI) conditions. In the EO and EC conditions, participants relaxed with their eyes open and closed, respectively. In the HG, participants matched the handgrip force level to 30% of the maximum voluntary force with visual feedback. In the MI, they performed kinesthetic MI of plantarflexion at the maximal strength with closed eyes. In the HG and MI, the amplitudes of the F-waves induced by MPS were increased compared with those in the EO and EC, respectively. These results indicate that the motoneuron pool excitability was facilitated during the HG and MI conditions, consistent with findings in previous studies. Our findings suggest that F-waves elicited by MPS can be a good tool in human neurophysiology to assess the motoneuron pool excitability during cognitive and motor tasks.
Insights
Motor point stimulation (MPS) robustly elicits F-waves, reflecting motoneuron pool excitability. This method successfully identified increased excitability during handgrip and motor imagery tasks.
Area of Science:
- Neuroscience
- Motor Control
- Electrophysiology
Background:
- F-waves are a neurophysiological measure of motoneuron pool excitability.
- Traditional nerve stimulation yields F-waves with low robustness (persistence and amplitude).
- Motor point stimulation (MPS) offers a more robust method for eliciting F-waves.
Purpose of the Study:
- To investigate if MPS-induced F-waves can detect changes in motoneuron pool excitability.
- To assess motoneuron pool excitability during handgrip (HG) and motor imagery (MI) tasks.
Main Methods:
- Twelve participants underwent MPS on the soleus muscle.
- F-waves were recorded under four conditions: eyes-open (EO), eyes-closed (EC), HG, and MI.
- HG involved maintaining 30% maximal voluntary contraction; MI involved kinesthetic imagery of plantarflexion.
Main Results:
- F-wave amplitudes were significantly increased during HG compared to EO.
- F-wave amplitudes were significantly increased during MI compared to EC.
- These findings indicate facilitated motoneuron pool excitability during both tasks.
Conclusions:
- MPS-elicited F-waves provide a robust and sensitive measure of motoneuron pool excitability.
- This technique is suitable for assessing neural changes during cognitive and motor tasks.
- MPS-induced F-waves represent a valuable tool in human neurophysiology research.
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