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May 18, 2026The Journal of Physiological Sciences0 citationsOpen Access

Attentional Modulation of Sensory Gating during a Visuomotor Task

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CVCuong Nguyen VanDLDuc Trung LeTOTakeru Okamoto

Key Points

  • This study aims to explore how attention affects sensory gating and autonomic responses during a visuomotor task.
  • Twenty-five participants performed under three conditions: no typing, free typing, and precision typing.
  • Sensory gating, heart rate variability, and eye blink rate were measured during task performance.
  • Electrophysiological components related to sensory processing were analyzed.
  • Higher attention levels resulted in increased sensory gating across auditory, visual, and somatosensory modalities.
  • Significant modulation was observed in higher-order event-related potentials: N1 and P2 in auditory, P1 in visual, P2 and P3 in somatosensory.
  • Decreased eye blink rate was associated with heightened visual attentional engagement.

Abstract

Attention is crucial for motor performance because it enhances task-relevant processing while suppressing distractions. However, physiological markers of attentional engagement during motor activity remain incompletely understood. The present study investigated how attention modulates sensory gating (SG) along with heart rate variability (HRV) and eye blink rate (EBR) during a visual cue-based typing task. Twenty-five participants performed under three conditions: (1) no typing, (2) free typing, (3) precision typing. The results revealed that higher attention led to a consistent increase in SG across distinct modalities. Particularly, this modulation was observed in higher-order components: N1, P2 in auditory evoked potential; P1 in visual evoked potential; P2, P3 in somatosensory evoked potential. Furthermore, task-related HRV modulation was associated with varying attentional and motor demands, while EBR decreased with increased visual attentional engagement. These findings further clarify SG and autonomic changes during attentional modulation in motor tasks, highlighting their potential for assessing attentional engagement. • Multisensory gating (auditory, visual, somatosensory) was consistently modulated by attentional engagement at cortical level. • Sensory gating modulation was observed in higher-order components: N1, P2 in AEP; P1 in VEP; P2, P3 in SEP. • Task-related HRV was associated with varying attentional and motor demands, while EBR decreased with increased visual attentional engagement in motor task.

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Cite This Study

Van et al. (2026) studied this question.

synapsesocial.com/papers/6a0aabf55ba8ef6d83b6f97fhttps://doi.org/10.1016/j.jphyss.2026.100080
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