The Role of the Medial Prefrontal Cortex in Spatial Margin of Safety Calculations
Abstract
Naturalistic observations show that animals pre-empt danger by moving to locations that increase their success in avoiding future threats. To test this in humans, we created a spatial margin of safety (MOS) decision task that quantifies pre-emptive avoidance by measuring the distance subjects place themselves to safety when facing different threats whose attack locations vary in predictability. Behavioral results show that human participants place themselves closer to safe locations when facing threats that attack in spatial locations with more outliers. Using both univariate and multivariate pattern analysis (MVPA) on fMRI data collected during a 2 h session on participants of both sexes, we demonstrate a dissociable role for the vmPFC in MOS-related decision-making. MVPA results revealed that the posterior vmPFC encoded for more unpredictable threats with univariate analyses showing a functional coupling with the amygdala and hippocampus. Conversely, the anterior vmPFC was more active for the more predictable attacks and showed coupling with the striatum. Our findings converge in showing that during pre-emptive danger, the anterior vmPFC may provide a safety signal, possibly via foreseeable outcomes, while the posterior vmPFC drives unpredictable danger signals.
Copyright and License
Copyright © 2024 the authors.
Funding
D.M. is supported by an award NIMH R01MH133730.
Contributions
Author contributions: S.Q. and D.M. designed research; S.Q. and X.S. performed research; S.Q. analyzed data;
S.Q., L.C., T.W., J.O., and D.M. wrote the paper.
Conflict of Interest
The authors declare no competing financial interests.
Supplemental Material
Files
Files
(696.6 kB)
| Name | Size | |
|---|---|---|
|
md5:dd5d83477ec2335437d1447296579337
|
696.6 kB | Download |
Additional details
Identifiers
- PMID
- 38997158
- PMCID
- PMC11340276
- DOI
- 10.1523/JNEUROSCI.1162-22.2024
Related works
- Is new version of
- Discussion Paper: 10.1101/2020.06.05.137075 (DOI)
Funding
- National Institute of Mental Health
- R01MH133730
Dates
- Accepted
-
2024-07-03
Caltech Custom Metadata
- Caltech groups
- Tianqiao and Chrissy Chen Institute for Neuroscience
- Publication Status
- Published