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A behavioral and eye movement study on inhibitory processing of action memory.

Yue He1, Zhanyu Yu1

  • 1School of Education Science, Jiangsu Normal University, No.101, Shanghai Road, Tongshan District, Xuzhou, Jiangsu Province 221116, China.

Acta Psychologica
|July 26, 2024
PubMed
Summary

Action memory relies on effective interference inhibition, especially for subject-performed tasks (SPT). High cognitive inhibition benefits verbal tasks (VT) more than SPT during encoding and storage under semantic interference.

Keywords:
Action memoryAttentional inhibitionCognitive inhibitionEnactment effectMotor encoding

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Area of Science:

  • Cognitive Psychology
  • Neuroscience
  • Memory Research

Background:

  • Effective interference inhibition is crucial for memory performance.
  • Its role in action memory, particularly during encoding and storage, is less understood.
  • Action memory involves motor skills and procedural learning.

Purpose of the Study:

  • To investigate inhibitory processes in action memory during encoding and storage.
  • To examine the interaction between individual cognitive inhibition abilities and action memory.
  • To explore attentional inhibition mechanisms during action memory storage.

Main Methods:

  • Experiment 1: 100 participants categorized into high/low cognitive inhibition groups (Stroop task), performing subject-performed tasks (SPT) or verbal tasks (VT) under semantic interference.
  • Experiment 2: 57 participants used a point detection task and eye-tracking to assess attentional inhibition during action memory storage.
  • Utilized Stroop task for cognitive inhibition assessment and eye-tracking for detailed analysis of attentional processes.

Main Results:

  • In encoding (Experiment 1), high cognitive inhibition enhanced inhibition effects (IF) in VT but not SPT under high semantic interference.
  • Behaviorally (Experiment 2), SPT showed greater IF than VT under semantic interference.
  • Eye-tracking revealed distinct attentional patterns: SPT subjects had higher initial, shorter overall fixations, and fewer later-stage fixations compared to VT.

Conclusions:

  • Subject-performed tasks (SPT) exhibit stronger inhibitory processing than verbal tasks (VT) during both encoding and storage under semantic interference.
  • Attentional inhibition in action memory primarily occurs during the later stages of processing.
  • Individual differences in cognitive inhibition significantly impact verbal memory interference but less so for action memory.