The mixed serotonin receptor agonist psilocybin reduces threat-induced modulation of amygdala connectivity
Rainer Kraehenmann, André Schmidt, Karl Friston, Katrin H. Preller, Erich Seifritz, Franz X. Vollenweider
NeuroImage Clinical August 22, 2015 DOI: 10.1016/j.nicl.2015.08.009 via OpenAlex
Summary
AI-generated from the abstractPsilocybin reduces the brain's threat response by weakening top-down signals from the amygdala to the primary visual cortex. Using dynamic causal modeling of fMRI data, researchers found that psilocybin decreased the threat-induced modulation of this specific connection within the visual-limbic-prefrontal network. This neural mechanism may help explain how psilocybin shifts emotional processing away from negative toward positive stimuli, which could be relevant for treating mood and anxiety disorders.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Intervention | Psilocybin |
| Topics | Psilocybin Serotonin |
| Keywords | Amygdala Neuroscience Prefrontal cortex |
| Citations | 107 |
| Key finding | Psilocybin decreased the threat-induced modulation of top-down connectivity from the amygdala to primary visual cortex. |
Abstract
Stimulation of serotonergic neurotransmission by psilocybin has been shown to shift emotional biases away from negative towards positive stimuli. We have recently shown that reduced amygdala activity during threat processing might underlie psilocybin's effect on emotional processing. However, it is still not known whether psilocybin modulates bottom-up or top-down connectivity within the visual-limbic-prefrontal network underlying threat processing. We therefore analyzed our previous fMRI data using dynamic causal modeling and used Bayesian model selection to infer how psilocybin modulated effective connectivity within the visual-limbic-prefrontal network during threat processing. First, both placebo and psilocybin data were best explained by a model in which threat affect modulated bidirectional connections between the primary visual cortex, amygdala, and lateral prefrontal cortex. Second, psilocybin decreased the threat-induced modulation of top-down connectivity from the amygdala to primary visual cortex, speaking to a neural mechanism that might underlie putative shifts towards positive affect states after psilocybin administration. These findings may have important implications for the treatment of mood and anxiety disorders.