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February 20, 2016Current Opinion in Psychiatry151 citationsOpen Access

Gamma band oscillations

JMJames M. McNallyRMRobert W. McCarley

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Patients with schizophrenia and animal models of the disease

Abnormal gamma band oscillations in schizophrenia are linked to impaired GABAergic neurotransmission, presenting a potential target for therapeutic intervention.

Abstract

PURPOSE OF REVIEW: We review our current understanding of abnormal γ band oscillations in schizophrenia, their association with symptoms and the underlying cortical circuit abnormality, with a particular focus on the role of fast-spiking parvalbumin gamma-aminobutyric acid (GABA) neurons in the disease state. RECENT FINDINGS: Clinical electrophysiological studies of schizophrenia patients and pharmacological models of the disorder show an increase in spontaneous γ band activity (not stimulus-evoked) measures. These findings provide a crucial link between preclinical and clinical work examining the role of γ band activity in schizophrenia. MRI-based experiments measuring cortical GABA provides evidence supporting impaired GABAergic neurotransmission in schizophrenia patients, which is correlated with γ band activity level. Several studies suggest that stimulation of the cortical circuitry, directly or via subcortical structures, has the potential to modulate cortical γ activity, and improve cognitive function. SUMMARY: Abnormal γ band activity is observed in patients with schizophrenia and disease models in animals, and is suggested to underlie the psychosis and cognitive/perceptual deficits. Convergent evidence from both clinical and preclinical studies suggest the central factor in γ band abnormalities is impaired GABAergic neurotransmission, particularly in a subclass of neurons which express parvalbumin. Rescue of γ band abnormalities presents an intriguing option for therapeutic intervention.

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McNally et al. (2016) studied this question.

synapsesocial.com/papers/6a8a5e50ec2e105e8ac144d8https://doi.org/10.1097/yco.0000000000000244
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