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Involvement of Sensory Regions in Affective Experience: A Meta-Analysis.


ABSTRACT: A growing body of work suggests that sensory processes may also contribute to affective experience. In this study, we performed a meta-analysis of affective experiences driven through visual, auditory, olfactory, gustatory, and somatosensory stimulus modalities including study contrasts that compared affective stimuli to matched neutral control stimuli. We found, first, that limbic and paralimbic regions, including the amygdala, anterior insula, pre-supplementary motor area, and portions of orbitofrontal cortex were consistently engaged across two or more modalities. Second, early sensory input regions in occipital, temporal, piriform, mid-insular, and primary sensory cortex were frequently engaged during affective experiences driven by visual, auditory, olfactory, gustatory, and somatosensory inputs. A classification analysis demonstrated that the pattern of neural activity across a contrast map diagnosed the stimulus modality driving the affective experience. These findings suggest that affective experiences are constructed from activity that is distributed across limbic and paralimbic brain regions and also activity in sensory cortical regions.

SUBMITTER: Satpute AB 

PROVIDER: S-EPMC4678183 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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Involvement of Sensory Regions in Affective Experience: A Meta-Analysis.

Satpute Ajay B AB   Kang Jian J   Bickart Kevin C KC   Yardley Helena H   Wager Tor D TD   Barrett Lisa F LF  

Frontiers in psychology 20151215


A growing body of work suggests that sensory processes may also contribute to affective experience. In this study, we performed a meta-analysis of affective experiences driven through visual, auditory, olfactory, gustatory, and somatosensory stimulus modalities including study contrasts that compared affective stimuli to matched neutral control stimuli. We found, first, that limbic and paralimbic regions, including the amygdala, anterior insula, pre-supplementary motor area, and portions of orbi  ...[more]

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