Literature DB >> 22763169

Dissecting the anticipation of aversion reveals dissociable neural networks.

Daniel W Grupe1, Desmond J Oathes, Jack B Nitschke.   

Abstract

The anticipation of future adversity confers adaptive benefits by engaging a suite of preparatory mechanisms, but this process can also be deleterious when carried out in excess. Neuroscientific investigations have largely treated anticipation as a unitary process, but we show here using functional magnetic resonance imaging that distinct stages of aversive anticipation are supported by dissociable neural mechanisms. Immediate anticipatory responses were observed in regions associated with threat detection and early processing of predictive cues, including the orbitofrontal cortex and pregenual anterior cingulate cortex, as well as the amygdala for individuals with elevated anxiety symptoms. Sustained anticipatory activity was observed in the forebrain/bed nucleus of the stria terminalis, anterior insula, anterior mid-cingulate cortex (aMCC), and midbrain/periaqueductal gray, regions associated with anxiety, interoception, and defensive behavior. The aMCC showed increased functional coupling with the midbrain during sustained anticipation of aversion, highlighting a circuit critical for the expression of preparatory fear responses. These data implicate distinct sets of regions that are active during different temporal stages of anticipation, and provide insight into how the human brain faces the future both adaptively and maladaptively.

Entities:  

Keywords:  BNST; amygdala; anterior insula; fMRI; rostral cingulate

Mesh:

Year:  2012        PMID: 22763169      PMCID: PMC3698367          DOI: 10.1093/cercor/bhs175

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  53 in total

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  61 in total

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7.  Altered brain activation and connectivity during anticipation of uncertain threat in trait anxiety.

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Review 8.  From Pavlov to PTSD: the extinction of conditioned fear in rodents, humans, and anxiety disorders.

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10.  Heightened extended amygdala metabolism following threat characterizes the early phenotypic risk to develop anxiety-related psychopathology.

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