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Updated: Feb 11, 2026

Measurements of Physiological Stress Responses in C. Elegans
Published on: May 21, 2020
Network control dynamics and subjective reactivity in physiological responses to psychosocial stress
Dayanne S Antonio1, Marcelo Bigliassi1
1College of Arts, Sciences, and Education, Florida International University, Miami, Florida, United States.
Abstract:
The ability to endure psychosocial stressors is critical for mental and physical well-being. Clarifying mechanisms that differentiate high- from low-tolerant individuals may inform resilience-oriented interventions. This exploratory study aimed to predict tolerance to the socially evaluated cold pressor test (SECPT) from a multimodal set of psychological ratings and physiological markers, quantifying how psychophysiological responses account for individual differences in acute psychosocial stress tolerance. Thirty healthy adults completed a 5-min baseline followed by the SECPT. Self-reported perceptual and affective responses, electrodermal activity, and electroencephalography [EEG; sensor-level Granger connectivity computed over a frontoparietal (FPN) scalp montage] were acquired throughout; a brief semi-structured interview complemented quantitative findings. Models were evaluated with stratified fivefold cross-validation. A random forest regressor with a square-root-transformed duration target explained 23.5% of the variance. Two composite features emerged as primary, directionally opposite predictors: the stress response index showed a positive effect; higher perceived stress, arousal, and pain were associated with longer tolerance, whereas FPN causal connectivity showed a negative effect; stronger directed influence predicted shorter tolerance. The SECPT manipulation produced a perceptual profile of higher stress, pain, and arousal with lower affective valence and perceived dominance. Sympathetic activity predominated, with an early peak and a trend toward habituation. Global FPN connectivity was attenuated, most notably over parietal, central-parietal, and frontal interhemispheric circuits. Together, these results indicate that tolerance reflects an interplay between subjective reactivity and network control dynamics. The findings provide initial, mechanistically informed markers of psychosocial stress tolerance and motivate larger studies to test generalizability and temporal dynamics.NEW & NOTEWORTHY We integrated self-report, electrodermal activity, and EEG connectivity focused on the frontoparietal network (FPN) to predict psychosocial stress tolerance. A random forest model explained 23.5% of the variance. Two composites showed opposing effects: a higher stress response index predicted longer tolerance, whereas a stronger FPN causal connectivity predicted shorter tolerance. SECPT produced sympathetic-dominant arousal and attenuated global FPN connectivity. Findings provide insights into the mechanisms underlying stress tolerance in psychosocial contexts.
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