Scinovex
article Open AccessTop 1% cited

The ecology of human fear: survival optimization and the nervous system

Frontiers in Neuroscience · 2015 · Vol. 9 · pp. 55–55
Dean MobbsCindy C. HaganTim DalgleishBrian SilstonCharlotte Prévost

Abstract

We propose a Survival Optimization System (SOS) to account for the strategies that humans and other animals use to defend against recurring and novel threats. The SOS attempts to merge ecological models that define a repertoire of contextually relevant threat induced survival behaviors with contemporary approaches to human affective science. We first propose that the goal of the nervous system is to reduce surprise and optimize actions by (i) predicting the sensory landscape by simulating possible encounters with threat and selecting the appropriate pre-encounter action and (ii) prevention strategies in which the organism manufactures safe environments. When a potential threat is encountered the (iii) threat orienting system is engaged to determine whether the organism ignores the stimulus or switches into a process of (iv) threat assessment, where the organism monitors the stimulus, weighs the threat value, predicts the actions of the threat, searches for safety, and guides behavioral actions crucial to directed escape. When under imminent attack, (v) defensive systems evoke fast reflexive indirect escape behaviors (i.e., fight or flight). This cascade of responses to threat of increasing magnitude are underwritten by an interconnected neural architecture that extends from cortical and hippocampal circuits, to attention, action and threat systems including the amygdala, striatum, and hard-wired defensive systems in the midbrain. The SOS also includes a modulatory feature consisting of cognitive appraisal systems that flexibly guide perception, risk and action. Moreover, personal and vicarious threat encounters fine-tune avoidance behaviors via model-based learning, with higher organisms bridging data to reduce face-to-face encounters with predators. Our model attempts to unify the divergent field of human affective science, proposing a highly integrated nervous system that has evolved to increase the organism's chances of survival.

Memory and Neural MechanismsNeural dynamics and brain functionNeuroendocrine regulation and behaviorNeuroscienceOrganismSurprisePsychologyStimulus (psychology)PerceptionCognitive scienceCognitive psychologyComputer scienceCommunication
Citations
492
FWCI
12.87
field-weighted impact
References
246
Percentile
99%
vs. same field & year
Citations per year
Cited by
Is our amygdala responsible for the choice of spine doctor? Pilot study
International Journal of Surgery Science · 2018 · 0 citations
References
Extinction Learning in Humans
Neuron · 2004 · 1,755 citations
Why individual vigilance declines as group size increases
Animal Behaviour · 1996 · 904 citations
Architectonic subdivision of the human orbital and medial prefrontal cortex
The Journal of Comparative Neurology · 2003 · 947 citations
Geometry for the selfish herd
Journal of Theoretical Biology · 1971 · 3,440 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.