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Making sense: Dopamine activates conscious self-monitoring through medial prefrontal cortex.

Morten Joensson, Kristine Rømer Thomsen, Lau M Andersen, Joachim Gross, Kim Mouridsen, Kristian Sandberg, Leif Østergaard, Hans C Lou

Human brain mapping May 1, 2015 DOI: 10.1002/hbm.22742 via PubMed

Summary

AI-generated from the abstract

Experiences that become meaningful to the self involve synchronous activity in a paralimbic network of self-awareness and dopaminergic activity, including medial prefrontal and medial parietal/posterior cingulate cortices. Oral administration of 100 mg dopamine improved noetic (conscious) metacognition in minimal self-awareness. In a separate experiment with extended self-awareness, dopamine improved retrieval accuracy of memories of self-judgment (autonoetic metacognition). Magnetoencephalography showed increased power of oscillations preferentially in the medial prefrontal cortex, explaining dopamine's specific effect on explicit self-awareness and autonoetic metacognition.

Study at a glance

Characteristics Experimental study with two experiments Peer reviewed
Intervention Dopamine
Dose 100 mg
Keywords Default mode Dopamine Medial prefrontal Metacognition Self-awareness
Citations 44
Key finding Dopamine administration improved noetic metacognition in minimal self-awareness and improved retrieval accuracy of autonoetic metacognition in extended self-awareness, with increased medial prefrontal cortex oscillatory power.

Abstract

When experiences become meaningful to the self, they are linked to synchronous activity in a paralimbic network of self-awareness and dopaminergic activity. This network includes medial prefrontal and medial parietal/posterior cingulate cortices, where transcranial magnetic stimulation may transiently impair self-awareness. Conversely, we hypothesize that dopaminergic stimulation may improve self-awareness and metacognition (i.e., the ability of the brain to consciously monitor its own cognitive processes). Here, we demonstrate improved noetic (conscious) metacognition by oral administration of 100 mg dopamine in minimal self-awareness. In a separate experiment with extended self-awareness dopamine improved the retrieval accuracy of memories of self-judgment (autonoetic, i.e., explicitly self-conscious) metacognition. Concomitantly, magnetoencephalography (MEG) showed increased amplitudes of oscillations (power) preferentially in the medial prefrontal cortex. Given that electromagnetic activity in this region is instrumental in self-awareness, this explains the specific effect of dopamine on explicit self-awareness and autonoetic metacognition.

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