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Decoding the Neural Correlates of Social Cognition and Emotion Recognition in Cannabis Users: A Systematic Review of Neuroimaging Studies.

C. Romein, Mika Mautner-Rohde, Karis Colyer-Patel, Helle Larsen, J. Cousijn

Behavioural Brain Research August 1, 2025 DOI: 10.1016/j.bbr.2025.115755 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

Long-term cannabis use may alter brain responses to social situations, increasing neural sensitivity to social influence while decreasing sensitivity to social exclusion, stress, and reward, according to a systematic review of 8 studies on social cognition. Findings from 21 studies on emotion recognition are inconsistent, with some showing increased and others decreased activity in the amygdala, cingulate cortex, and frontal areas in cannabis users compared to controls. The authors caution that results are preliminary due to few studies per area and methodological differences. Causal relationships and the roles of user characteristics like symptom severity, gender, and age remain unclear.

Study at a glance

Characteristics Systematic review Longitudinal Peer reviewed
Population Long-term cannabis users
Keywords Medicine Psychology
Key finding Long-term cannabis use is associated with increased neural response to social influence and decreased neural sensitivity to social exclusion, psychosocial stress, and social reward, while emotion recognition findings are inconsistent.

Abstract

Social factors significantly influence the initiation and progression of cannabis use and cannabis use disorder. Although cannabis is the most widely used drug globally, its social cognitive aspects and neural correlates have rarely been studied. To evaluate the findings to date and to guide future research, this systematic review assesses neuroimaging evidence on the associations between long-term cannabis use, social cognition, and emotion recognition. Findings from 8 studies on social cognition suggest an increased neural response to social influence and a decreased neural sensitivity to social exclusion, psychosocial stress, and social reward. However, these results should be interpreted with caution, and further replication is necessary due to the limited number of studies in each area. The findings from 21 studies on emotion recognition remain largely inconsistent. Specifically, regarding the amygdala, cingulate cortex, and frontal areas, findings vary, with certain studies reporting increased activity in response to affective stimuli in cannabis users compared to controls, while other studies reported the opposite effect. These effects could be caused by methodological and sample differences across the studies on emotion recognition. Overall, the functional implications, the causal relationship with use, and the role of individual user characteristics, such as the severity of CUD symptoms, gender, and age remain unclear. Future research should involve larger, more diverse samples and specifically target individuals with CUD. Especially, longitudinal studies focusing on social motivational processes, the brain, and the roles of age and gender as potential moderators could provide valuable insights.

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