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Individual differences in beta-band oscillations predict motor-inhibitory control.

Qian Ding1,2,3, Tuo Lin1, Guiyuan Cai1

  • 1Department of Rehabilitation Medicine, Guangzhou First People's Hospital, South China University of Technology, Guangzhou, Guangdong, China.

Frontiers in Neuroscience
|March 20, 2023
PubMed
Summary

Individuals with better motor inhibitory control exhibit lower beta band oscillations in the brain. This study links reduced beta band power and connectivity to enhanced response inhibition.

Keywords:
EEGbeta-band oscillationsfunctional connectivityglobal efficiencymotor inhibitory control

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Area of Science:

  • Neuroscience
  • Cognitive Neuroscience
  • Motor Control

Background:

  • Motor-inhibitory control is essential for daily functioning.
  • The neural underpinnings of motor inhibitory control deficits require further investigation.
  • The role of beta band oscillations in motor inhibitory control remains unclear.

Purpose of the Study:

  • To systematically investigate the relationship between resting-state beta band oscillations and motor-inhibitory control.
  • To determine if beta band oscillations are associated with the ability to inhibit motor responses.

Main Methods:

  • Thirty healthy young adults participated in the study.
  • Motor-inhibitory control was assessed using the stop-signal reaction time (SSRT) task.
  • Resting-state electroencephalography (EEG) was recorded to analyze beta band power and functional connectivity.

Main Results:

  • Increased beta band power in the motor cortex, somatosensory cortex, and inferior frontal cortex correlated positively with SSRT.
  • Higher beta band coherence and global efficiency within these regions also correlated positively with SSRT.
  • These findings indicate a positive association between beta band oscillations and poorer motor inhibitory control.

Conclusions:

  • This study is the first to link resting-state cortical beta oscillations with response inhibition.
  • Individuals with superior motor inhibitory control demonstrated reduced beta band power and functional connectivity.
  • The findings offer insights into the neurophysiological mechanisms underlying motor inhibitory control deficits and have potential clinical significance.