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May 1, 2025Psychophysiology1 citationsOpen Access

Reactivity of the Autonomic Nervous System During Visual‐Physical Incongruent Walking Conditions—A Virtual Reality Study

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ALAdi LustigABAmit BenadySGSharon Gilaie‐Dotan

Structured PICO

Does walking with incongruent visual-physical cues in a virtual reality environment alter autonomic nervous system reactivity (HR and HRV) in healthy young participants?

P
Population
14 healthy young participants
I
Intervention
Self-paced walking trials in a virtual reality (VR) environment with incongruent visual cues (visual incline incongruent with physical incline)
C
Comparator
Self-paced walking trials in a virtual reality (VR) environment with congruent visual cues
O
Outcome
Responsiveness of the autonomic nervous system (ANS) as reflected by cardiac reactivity (heart rate [HR] and heart rate variability [HRV])surrogate

Incongruent visual and physical cues during walking alter autonomic nervous system balance, suggesting ANS involvement in facilitating adaptive behavior during locomotion.

Abstract

The force of gravity critically impacts locomotion regulation while walking on inclined surfaces. To construct an updated assessment about the gravitational consequences and change gait patterns accordingly, the central nervous system (CNS) integrates multiple sensorial cues, including vestibular and proprioceptive (i.e., body-based cues) and visual. Not much is known about the contribution of the autonomic nervous system (ANS) to locomotion regulation, especially when multiple types of sensorial cues are involved. Here we examine the responsiveness of the ANS, as reflected by cardiac reactivity, for example heart rate (HR) and heart rate variability (HRV), to coherent versus non-coherent sensorimotor signaling. Fourteen healthy young participants completed level, uphill, and downhill self-paced walking trials in a virtual reality (VR) environment in which the incline of the visual scene was either congruent or incongruent with the physical incline of the walking surface. We found that during level walking, incongruent visual cues (i.e., up/downhill scenery) triggered alterations in ANS balance, reflected in HRV decrease and in a residual increase of HR. Taken together with the fact that an ultimate change in gait patterns requires alterations in cardiac resources, we speculate that ANS function and its responsive modes of action are, in fact, facilitating adaptive behavior.

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Cite This Study

Lustig et al. (2025) studied this question.

synapsesocial.com/papers/6a1bc41800ee29383e9cdab8https://doi.org/10.1111/psyp.70072
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