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Hallucinatory experience as aberrant event memory formation: Implications for the pathophysiology of schizophrenia.

Ralf-Peter Behrendt

Progress in neuro-psychopharmacology & biological psychiatry November 3, 2016 DOI: 10.1016/j.pnpbp.2016.07.009 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Hallucinations may not be fundamentally different from normal conscious experiences; both arise from the same neural processes. Conscious experience reflects the formation of event (episodic) memories, linking hallucinations to the hippocampus. Perceptions and misperceptions are manifestations of activity patterns that recurrently emerge in the CA3 network of the hippocampus, which forms allocentric representations of objects in context. The hippocampus integrates sensory information, emotional context, and guides decision-making via the medial prefrontal cortex. Disruptions in relational memory processing in the hippocampus can give rise to hallucinations. Neurobiological and neuroimaging findings in schizophrenia research support this framework.

Study at a glance

Characteristics Theoretical or philosophical paper Peer reviewed
Keywords Consciousness Episodic memory Hippocampus Schizophrenia
Key finding Argues that the neural basis of hallucinations is essentially that of consciousness in general, specifically linked to pattern formation in the hippocampus's CA3 network, and that disruptions in relational memory processing in the hippocampus can give rise to hallucinations.

Abstract

If hallucinations are not fundamentally different from normal wakeful experiences, then the neural basis of hallucinations has to be essentially that of consciousness in general. The additional insight that consciousness reflects the formation (as opposed to consolidation) of event (episodic) memories links the pathophysiology of hallucinations to the hippocampus. Perceptions and misperceptions, insofar as they are consciously experienced, constitute contextualized and unitary phenomena (which are embedded as discrete events in the stream of consciousness); they are experiential manifestations of activity patters that recurrently emerge in the CA3 network of the hippocampus (and that are secondarily consolidated into retrievable and declarable memories). The hippocampus, forming allocentric representations of objects in their world context (event memories), is a point of convergence of neocortical sensory processing streams. Moreover, being extensively modulated by the organism's physiological state, the hippocampus embeds such representations in an emotional context and, through its output to the medial prefrontal cortex, guides decision-making and goal-selection processes. Although sensory and associative processing in the neocortex makes an important contribution to the formation of behaviourally adaptive representations in the hippocampus, it is becoming clearer that pattern formation in the hippocampus is in itself the neural correlate of consciousness and that disruptions in relational memory processing in the hippocampus can give rise to hallucinations. Neurobiological and neuroimaging findings in schizophrenia research can be integrated within the proposed conceptual framework.

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