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October 14, 2024Psychophysiology18 citationsOpen Access

Linking brain–heart interactions to emotional arousal in immersive virtual reality

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AFAntonin FourcadeFKFelix KlotzscheSHS. Hofmann

Key Result

Higher emotional arousal during immersive VR was associated with lower heartbeat-evoked potential amplitudes and altered brain-heart information flow in temporo-occipital gamma power.

Study Design

Type

Observational (n=29)

Structured PICO

P
Population
29 healthy adults, mean age 26 ± 3, 13 women
I
Intervention
Immersive virtual reality (VR) experience including rollercoasters for emotion induction with concurrent EEG and ECG recording
O
Outcome
Emotional arousal-related changes in high-frequency heart rate variability (HF-HRV) and brain-heart interactions using heartbeat-evoked potentials (HEPs)surrogate

Immersive VR-induced emotional arousal is linked to specific brain-heart interactions, including reduced parasympathetic modulation and altered temporo-occipital gamma power.

Abstract

The subjective experience of emotions is linked to the contextualized perception and appraisal of changes in bodily (e.g., heart) activity. Increased emotional arousal has been related to attenuated high-frequency heart rate variability (HF-HRV), lower EEG parieto-occipital alpha power, and higher heartbeat-evoked potential (HEP) amplitudes. We studied emotional arousal-related brain-heart interactions using immersive virtual reality (VR) for naturalistic yet controlled emotion induction. Twenty-nine healthy adults (13 women, age: 26 ± 3) completed a VR experience that included rollercoasters while EEG and ECG were recorded. Continuous emotional arousal ratings were collected during a video replay immediately after. We analyzed emotional arousal-related changes in HF-HRV as well as in BHIs using HEPs. Additionally, we used the oscillatory information in the ECG and the EEG to model the directional information flows between the brain and heart activity. We found that higher emotional arousal was associated with lower HEP amplitudes in a left fronto-central electrode cluster. While parasympathetic modulation of the heart (HF-HRV) and parieto-occipital EEG alpha power were reduced during higher emotional arousal, there was no evidence for the hypothesized emotional arousal-related changes in bidirectional information flow between them. Whole-brain exploratory analyses in additional EEG (delta, theta, alpha, beta and gamma) and HRV (low-frequency, LF, and HF) frequency bands revealed a temporo-occipital cluster, in which higher emotional arousal was linked to decreased brain-to-heart (i.e., gamma→HF-HRV) and increased heart-to-brain (i.e., LF-HRV → gamma) information flow. Our results confirm previous findings from less naturalistic experiments and suggest a link between emotional arousal and brain-heart interactions in temporo-occipital gamma power.

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Cite This Study

Fourcade et al. (2024) conducted an observational in Healthy adults (n=29). Immersive virtual reality (VR) emotion induction was evaluated on Emotional arousal-related changes in HF-HRV and brain-heart interactions using heartbeat-evoked potentials. Higher emotional arousal during immersive VR was associated with lower heartbeat-evoked potential amplitudes and altered brain-heart information flow in temporo-occipital gamma power.

synapsesocial.com/papers/6a15cb34cb801b7f954ee779https://doi.org/10.1111/psyp.14696
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