Resolving temporal threat uncertainty by observational learning involves the amygdala, hippocampus and anterior insula

Abstract By observing others’ experiences, humans learn about threats while avoiding firsthand dangers. Yet, previous neuroscience research has focused on observational threats that are predictable. In firsthand learning, temporally predictable and unpredictable threats can be mechanistically discerned. In this study, we developed a novel observational paradigm in which participants learned from predictable and unpredictable observational threats, as well as a no-threat condition. Participants encountered the same conditions during an expression phase to investigate how the brain encodes predictive and unpredictive threat cues observed in others. Participants in Experiment 1 ( n = 20, 14 female, 6 male) and Experiment 2 (n = 23, 9 female, 1 non-binary, 13 male) successfully learned threat contingencies, showing heightened threat expectations for predictive cues and unpredictable condition-onsets. Behavioral findings converged with neural (fMRI, Experiment 2) responses in the anterior insula during the expression phase. Reflecting the dynamic process of learning, amygdala activation in response to predictive threat cues displayed a linear decrease across trials. Interestingly, BOLD responses to others’ pain that was predictable, were enhanced within the amygdala, insula and hippocampus, compared to unpredictable conditions. Our findings suggest that humans can learn to resolve temporal threat uncertainty, through the observation of others. The present work thereby contributes to understanding the social aspects of fear and anxiety disorders.

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Publication Details

Journal
Translational Psychiatry
Published
2026-09-26
DOI
https://doi.org/10.1038/s41398-026-04492-7
Primary Topic
Memory and Neural Mechanisms
Type
article
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Resolving temporal threat uncertainty by observational learning involves the amygdala, hippocampus and anterior insula

Simon Knobloch, Jan Haaker, Lara Caroline Hille, Theresa Jansen et al.
Translational Psychiatry
Memory and Neural Mechanisms
article

Resolving temporal threat uncertainty by observational learning involves the amygdala, hippocampus and anterior insula

Simon Knobloch, Jan Haaker, Lara Caroline Hille, Theresa Jansen, Leonie Rumpf, Christian Francis Lewis Bauer, Madeleine Müller
article en

Abstract

Abstract By observing others’ experiences, humans learn about threats while avoiding firsthand dangers. Yet, previous neuroscience research has focused on observational threats that are predictable. In firsthand learning, temporally predictable and unpredictable threats can be mechanistically discerned. In this study, we developed a novel observational paradigm in which participants learned from predictable and unpredictable observational threats, as well as a no-threat condition. Participants encountered the same conditions during an expression phase to investigate how the brain encodes predictive and unpredictive threat cues observed in others. Participants in Experiment 1 ( n = 20, 14 female, 6 male) and Experiment 2 (n = 23, 9 female, 1 non-binary, 13 male) successfully learned threat contingencies, showing heightened threat expectations for predictive cues and unpredictable condition-onsets. Behavioral findings converged with neural (fMRI, Experiment 2) responses in the anterior insula during the expression phase. Reflecting the dynamic process of learning, amygdala activation in response to predictive threat cues displayed a linear decrease across trials. Interestingly, BOLD responses to others’ pain that was predictable, were enhanced within the amygdala, insula and hippocampus, compared to unpredictable conditions. Our findings suggest that humans can learn to resolve temporal threat uncertainty, through the observation of others. The present work thereby contributes to understanding the social aspects of fear and anxiety disorders.

Translational PsychiatryVol. 16(1)
Reduced inequalities
Openalex Percentile: Top 10%
Memory and Neural Mechanisms
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Resolving temporal threat uncertainty by observational learning involves the amygdala, hippocampus and anterior insula — Simon Knobloch, Jan Haaker, et al. · Translational Psychiatry (2026) | TGRS Research Map | TGRS