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Related Experiment Video

Updated: May 12, 2026

Applying Incongruent Visual-Tactile Stimuli during Object Transfer with Vibro-Tactile Feedback
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Vibrotactile augmentation enhances late-phase control in sequential reaching without accuracy costs.

Saba Mohammadalinezhad Kolahdouz1, Quinn Malone2, Steven R Passmore3

  • 1Perceptual Motor Integration Lab, Applied Health Sciences, Faculty of Kinesiology and Recreation Management, University of Manitoba, Winnipeg, MB, Canada.

Frontiers in Human Neuroscience
|May 11, 2026
PubMed
Summary

Vibrotactile feedback enhances motor control in sequential movements by improving late-phase movement adjustments. This sensory augmentation strategy shows promise for improving complex motor task performance.

Keywords:
auditory stimulationcoordinationkinematicsmotor activitysensory integrationvibration

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Area of Science:

  • Motor control and learning
  • Human-computer interaction
  • Neurorehabilitation

Background:

  • Sequential goal-directed movements integrate planning and online control.
  • Augmented sensory feedback's influence on multi-segment movement control is not fully understood.
  • Vibrotactile and auditory feedback may improve motor control in complex tasks.

Purpose of the Study:

  • To investigate the effect of vibrotactile and auditory feedback on sequential reaching movements.
  • To determine how sensory feedback influences planning and online control across movement segments.
  • To assess the impact of feedback on reaction time, movement time, and kinematic measures.

Main Methods:

  • Twenty-four neurotypical adults performed single- and bimanual reaching tasks.
  • Tasks involved one- and two-target sequences with extension and reversal components.
  • Movement analysis included no feedback, auditory feedback, and vibrotactile feedback conditions.

Main Results:

  • Reaction time was faster without feedback and in less complex tasks.
  • Vibrotactile feedback improved late-phase control (time after peak velocity) in the second movement segment.
  • Movement complexity significantly affected kinematic control, especially in bimanual reversal movements.

Conclusions:

  • Vibrotactile feedback selectively enhances deceleration control in sequential reaching.
  • Sensory augmentation via vibrotactile feedback can improve motor task efficiency.
  • This approach may benefit individuals with sensorimotor impairments.