Neural signatures of human psychological resilience driven by acute stress
Watanabe, N.; Yoshida, S.; Keerativittayayut, R.; Takeda, M.
Show abstract
Neurophysiological mechanisms underlying psychological resilience, the ability to overcome adversity1,2, have been extensively studied in animals. However, in comparison with animals, human resilience is unique in that it is underpinned by higher cognitive functions, such as self-confidence and a positive attitude to challenges3,4. Given these discrepancies, the neurophysiological mechanisms underlying human resilience remain unclear. To address this issue, we recorded multimodal responses after acute stress exposure over 1.5 hours using functional brain imaging and peripheral physiological measurements. Here, we showed that the degree of individual resilience is indexed by multiple changes in neural dynamics 1 hour after acute stress. Both functional magnetic resonance imaging and electroencephalography show that activity in the cortical salience network and power in high-beta and gamma oscillations increase in less resilient individuals. Contrastingly, activity in the cortical default mode network and spontaneous activity in the posterior hippocampus increase in more resilient individuals. Machine learning analysis confirmed that, 1 hour after stress exposure, the functional connectivity in the salience network was the most influential, followed by that in the default mode network, gamma power, high-beta power, and hippocampal activity. The neurophysiological dynamics for resilience do not occur as previously thought, but rather in a time-lagged manner against stress exposure. Our findings Shed light on a new approach to recovery from stress-induced deficits such as delayed neuromodulation after a stressful event.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A neurofunctional signature of affective arousal generalizes across valence domains and distinguishes subjective experience from autonomic reactivity 94%
- A neural signature for the subjective experience of threat anticipation under uncertainty 94%
- Dynamic reconfiguration of functional brain networks during working memory training 93%
Similar papers in this journal
- Stress-related emotional and behavioural impact following the first COVID-19 outbreak peak 93%
- Transcriptome signatures of the medial prefrontal cortex underlying GABAergic control of resilience to chronic stress exposure 93%
- Deletion of Crtc1 leads to hippocampal neuroenergetic impairments associated with depressive-like behavior 92%
Similar papers in this journal
- Brain and molecular mechanisms underlying the nonlinear association between close friendships, mental health, and cognition in children 93%
- Omissions of Threat Trigger Subjective Relief and Prediction Error-Like Signaling in the Human Reward and Salience Systems 93%
- Intrinsic excitation-inhibition imbalance affects medial prefrontal cortex differently in autistic men versus women 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.