Training Mental Simulation as a Tool for Voluntary Regulation of Physiological Arousal

People can change their bodily state by imagining events, and some autonomic measurescan be trained with biofeedback or contemplative practice. It is unknown whether deliberatelyconstructed mental simulation, taught as a skill, can be trained to move a physiologicalmeasure up, hold it, and bring it down, and whether any gain depends on real-time feedback.This manuscript proposes a four-arm randomized, assessor-blinded experiment thatseparates simulation training from true biofeedback, sham (yoked) feedback, and an activecontrol. The primary outcome is a preregistered bidirectional regulation index based on skinconductance, tested without feedback after six weeks and again four weeks later.Respiration, muscle activity, and the strategies participants actually use are recorded so thatbreathing, tension, and mental arithmetic can be ruled out as alternative explanations. Thestudy can fail in several specified ways, and each failure would be informative.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-03
DOI
https://doi.org/10.5281/zenodo.23116324
Primary Topic
Motor Control and Adaptation
Type
article
Field-Weighted Citation Impact
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article

Training Mental Simulation as a Tool for Voluntary Regulation of Physiological Arousal

guleria Divyanshu
Zenodo (CERN European Organization for Nuclear Research)
Motor Control and Adaptation
article

Training Mental Simulation as a Tool for Voluntary Regulation of Physiological Arousal

guleria Divyanshu
article en

Abstract

People can change their bodily state by imagining events, and some autonomic measurescan be trained with biofeedback or contemplative practice. It is unknown whether deliberatelyconstructed mental simulation, taught as a skill, can be trained to move a physiologicalmeasure up, hold it, and bring it down, and whether any gain depends on real-time feedback.This manuscript proposes a four-arm randomized, assessor-blinded experiment thatseparates simulation training from true biofeedback, sham (yoked) feedback, and an activecontrol. The primary outcome is a preregistered bidirectional regulation index based on skinconductance, tested without feedback after six weeks and again four weeks later.Respiration, muscle activity, and the strategies participants actually use are recorded so thatbreathing, tension, and mental arithmetic can be ruled out as alternative explanations. Thestudy can fail in several specified ways, and each failure would be informative.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 10%
Motor Control and Adaptation
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